Showing posts with label PLX4032. Show all posts
Showing posts with label PLX4032. Show all posts

Sunday, December 25, 2011

Holiday Wishes to you All !! Melanoma..Jim Breitfeller

I would like to wish each and every one of my carepage friends the warmest and deepest greetings this Holiday Season. We been through a lot and with the comfort of family and friends we can beat the Beast Melanoma.

It has been truely a renewed emergence in Melanoma therapy this past year with TWO therapies being FDA approved that extends survival for us Melanoma patients. At this time of the Season, please relect on the Worriors that are no longer with us, but made this all possible by offering their life to the progress of science.

They truely have shown us the gift of giving.

They truely are my/our HEROS!!!

We will miss them dearly.

Happy Holidays




“It is not the strongest of the species that survives, nor the most intelligent, but the one most responsive to change.”

~Charles Darwin~

Take Care,

Jimmy B

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Tuesday, August 9, 2011

FDA approval of Roche melanoma drug (Vemurafenib) may come early

Reuters) - Regulators are moving quickly with Roche's application for targeted melanoma drug vemurafenib, which could receive approval as early as this week, according to a source familiar with the situation.

Vemurafenib, whose brand name is Zelboraf

Source: FDA approval of Roche melanoma drug may come early



Your tumors must be BRAFV600E positive




“It is not the strongest of the species that survives, nor the most intelligent, but the one most responsive to change.”

~Charles Darwin~

Take Care,

Jimmy B


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Tuesday, June 28, 2011

ASCO Review with Dr. John Kirkwood on Melanoma Therapies..jim Breitfeller

The full Audio of the Dr. Kirkwood interview at ASCO 2011


Please if you get a chance, listen to the full interview of Dr. John Kirkwood on the lastest therapies for Melanoma. It might help save your life or loveone's life.

Get a cup of coffee and a pad and pencil.

Enjoy




“It is not the strongest of the species that survives, nor the most intelligent, but the one most responsive to change.”
~Charles Darwin~

Take Care,
Jimmy B
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Tuesday, June 14, 2011

2011 ASCO Annual Meeting Highlights on Melanoma and Neuroblastoma, with Lynn Schuchter, MD ..jim breitfeller

2011 ASCO Annual Meeting Highlights on Melanoma and Neuroblastoma, with Lynn Schuchter, MD
June 5, 2011

2011 ASCO Annual Meeting Highlights on Melanoma and Neuroblastoma, with Lynn Schuchter, MD



“It is not the strongest of the species that survives, nor the most intelligent, but the one most responsive to change.”

~Charles Darwin~

Take Care,

Jimmy B

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Thursday, June 2, 2011

Bristol, Roche team up on melanoma study..Jim Breitfeller

By Bill Berkrot and Lewis Krauskopf

NEW YORK | Thu Jun 2, 2011 1:30pm EDT

NEW YORK (Reuters) - Bristol-Myers Squibb and Roche Holding AG said on Thursday they would evaluate their respective cancer drugs as a potential combination therapy for metastatic melanoma.

The collaboration involves a Phase I/II study with Bristol's recently approved Yervoy and Roche's experimental drug, vemurafenib, to determine the safety and efficacy of the combination in treating the deadliest form of skin cancer.

The announcement comes as the American Society of Clinical Oncology meeting begins this weekend in Chicago, where emerging treatments for melanoma will be in the spotlight.

Among the most eagerly anticipated studies being presented at the ASCO meeting will be a Phase III trial intended to show that vemurafenib extended the lives of patients with advanced melanoma, and another study comparing Yervoy to chemotherapy in patients with the fatal disease.

Yervoy won U.S. approval in March for patients with inoperable or metastatic melanoma, making it the first new treatment option in many years for patients for whom there was little hope and virtually no effective medicines.

Roche and Japanese drugmaker Daiichi Sankyo Co recently submitted U.S. and European applications seeking approval for vemurafenib. The drug was developed by Roche's Genentech unit and Plexxikon, which was recently acquired by Daiichi.

Vemurafenib, a so-called BRAF inhibitor, is designed to selectively target and inhibit a mutated form of the BRAF protein found in about half of all cases of melanoma. The combination study with Yervoy will be in patients with BRAF-mutated metastatic melanoma, Roche said.

Roche is also developing a combination diagnostic to help identify those patients with the BRAF mutation who are likely to benefit from vemurafenib.

"We are entering a new era for melanoma, and are committed to studying exciting combinations with investigational medicines in our own pipeline," Roche Chief Medical Officer Hal Barron said in a statement.

If proven effective and approved the Yervoy-vemurafenib combination would be an extremely expensive treatment option that could meet with reimbursement resistance from government programs and health insurers.

Bristol priced a four-infusion course of Yervoy at about $120,000. Vemurafenib will likely also command premium pricing if it too demonstrates an ability to help patients live longer.

More than 70,000 people in the United States and 160,000 worldwide are diagnosed with melanoma each year, according to the American Cancer Society. The five-year survival rate for the aggressive cancer is just 15 percent.

Source:http://www.reuters.com/article/2011/06/02/us-bristol-roche-melanoma-idUSTRE75151W20110602


All I can say.... It is about Time!!!! Lets all work together for the common good.


“It is not the strongest of the species that survives, nor the most intelligent, but the one most responsive to change.”
~Charles Darwin~

Take Care,

Jimmy B

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Saturday, April 2, 2011

Imagining a Cure..Melanoma ..Jim Breitfeller

Imagining a Cure
By Nicholas P. Restifo and Megan Bachinski
For cancer patients, close is not good enough.

Andrzej KrauzeImagine a land where every year a deadly plague afflicts 53,000 people—enough to fill a small stadium. Most are fortunate enough to discover their illness early, when it is completely curable. But 8,000 are not so lucky and their disease spreads to other parts of the body, with lethal consequences. Imagine this happening each year, with little reduction in the numbers who die, and you will understand the toll melanoma takes on patients and their families in the United States alone.

An electrical switch for cancer?

Currently, there are only two FDA-approved treatments for patients with metastatic melanoma: dacarbazine and interleukin-2. These treatments have complete response rates of 2.7 percent and 6.3 percent respectively. A durable complete response—the disappearance of all cancer—is the holy grail of cancer treatment. While patients can sometimes benefit enormously from partial responses, every patient aspires to become cancer free. Studies have shown that in the case of metastatic cancer, any residual tumor cells not killed by therapeutic intervention will ultimately grow back.

Two new treatments, ipilimumab and PLX4032, will probably soon receive FDA approval. While both improve the survival of late-stage metastatic melanoma patients, their reported rates of durable complete response are 0.6 percent and about 2.0 percent, respectively. The difficult reality for melanoma patients is that partial response with any of the available treatment offers only a temporary respite in disease progression. Of course, living with cancer is better than dying from it, but oncologists have not yet been able to achieve a “stasis” of disease like that seen in patients with HIV. Although there are exceptions, delays in the progression of metastatic melanoma after an incomplete response to treatment are usually measured in months, not years, and most of these patients will die from their disease.

A durable complete response—the disappearance of all cancer—is the holy grail of cancer treatment.Adoptive cell transfer (ACT) might offer more than simply hope to people who have failed on these and other treatments. ACT employs methods that involve extracting a patient’s antigen-specific immune cells, usually found in tumor tissue, and expanding the number of these antitumor T lymphocytes ex vivo. When the cells are reinfused intravenously together with the T-cell growth factor (interleukin-2), they are demonstrably capable of trafficking to the tumor and mediating its destruction. The addition of “preparative lymphodepletion”—the temporary ablation of a cancer patient’s immune system—can be accomplished using chemotherapy alone or in combination with total-body irradiation, and is associated with enhanced persistence of the transferred T cells.

ACT can lead to prolonged tumor eradication even for patients with stage IV metastatic melanoma who have exhausted other treatment options. While oncologists are always hesitant to use the word “cure,” mature clinical trials of ACT have demonstrated the disappearance of all tumor in 20/93 patients treated (21.5%). Most importantly, for 19 of these 20 patients (95%), the complete responses have been durable and long-lasting, with some patients remaining disease free for more than 7 years (J Clin Oncol, 26:5233-39, 2008; updated 2010). For these patients, ACT-based immunotherapy may well represent a cure.

It is not easy to own the “drug” used in adoptive cell transfer— the patient’s own T cells.It is important to distinguish ACT-based treatments from other immunotherapies, such as therapeutic cancer vaccines, which have seen a surge of support from pharmaceutical companies since the approval of sipuleucel-T (Provenge). Costing approximately $93,000, sipuleucel-T is not associated with long-term response or even tumor regression. Cancer vaccine clinical trials have resulted in an overall response rate of less than 4 percent (Immunol Rev, 239:27-44, 2011). Some therapeutic cancer vaccines might provide modest but valuable prolongation of survival, but those currently in use do not come close to the aspirational goal of a “cure.”

If ACT-based immunotherapies have the potential to cure one in five patients with metastatic melanoma, why is the procedure only available in a handful of locations worldwide? Why is there so little commercial interest in developing this therapy? What can be done to facilitate the more widespread administration of ACT-based immunotherapies?

The first explanation for the scarcity of these treatments is financial. ACT-based immunotherapies are still considered experimental, are not FDA-approved, and are not paid for by patients’ insurance. Thus, only a handful of locations are able to bear the fiscal burden of administering ACT. But how heavy is that burden? Assuming the host institution has a cell production facility and the specialized staff to run it, the cost for producing a single dose of adoptively transferred T cells is approximately $20,000 plus all costs associated with hospitalization for the treatment. However, even though the costs of ACT can be high, most patients only require a single dose. Estimated costs seem comparable to or less expensive than many of the recently FDA-approved cancer medications—such as bevacizumab (Avastin) or cetuximab (Erbitux)—where the price tag for the medicine alone can exceed $80,000, and no patients are cured. Although ACT-based immunotherapies are neither quick nor cheap, an immune-based approach this effective for a subset of patients is likely to represent a reasonable cost-benefit profile.

It might seem perplexing that the private sector has not pushed for an FDA-approved licensing trial. However a clear path to profitability is still missing in the development of ACT-based immunotherapy for use in the medical marketplace. Not a simple injection or a pill, ACT-based treatments are uniquely tailored for each patient. The cost of entry into the field with a licensing trial includes construction of a specialized facility and the acquisition of highly trained medical and laboratory staff. There may also be a perception that ACT-based approaches lack a clearly defined claim to intellectual property (IP), which entices companies and their shareholders to invest in the development of new treatments. After all, it is not easy to own the “drug” used in ACT—the patient’s own T cells. However, recent financial success realized by Dendreon, the manufacturers of Provenge, which also uses autologous cells, may go a long way toward changing the attitudes of investors. Many aspects of antitumor T cell production might be patentable, and the use of patentable genetically engineered T cells could provide the type of clearly defined IP that investors seek.

Some may argue that a more appropriate sponsor for ACT-based immunotherapy is the cash-strapped public sector. It seems more likely that a network of cancer centers, institutes, and hospitals could form a consortium to refine ACT technology and sponsor an FDA-approved licensing trial. A successful trial and FDA approval for ACT-based immunotherapy could result in a financial windfall for participating institutions. It also seems plausible that leaders from the not-for-profit sector could step forward. A social entrepreneur or “dot-org” research foundation could potentially catalyze the widespread application of ACT technology.

Adding to the list of cancers treatable with ACT could provide a new group of stakeholders with the impetus to push the concept forward. Although most of the work done thus far has been focused on melanoma, current efforts have enlarged the list of cancers treatable with ACT to include synovial-cell sarcomas and B-cell lymphomas. These new examples will hopefully encourage corporate and nonprofit entities to envision the possibility of treating more-common cancers, such as those of the lung, breast, colon and prostate, which offer bigger targets for cure, as well as larger financial incentives. Although the use of ACT-based treatments remains confined to a handful of centers worldwide, the employment of a patient’s own immune system to eradicate cancer is a strategy that can no longer be ignored.

Nicholas P. Restifo is a principal investigator at the National Cancer Institute’s Center for Cancer Research, where he works on designing new immunotherapies for patients with advanced cancer. Megan Bachinski is a writer and editor living in Silver Spring, Maryland.

Read more: Imagining a Cure - The Scientist - Magazine of the Life Sciences http://www.the-scientist.com/article/display/58067/#ixzz1INPptwuK

Instead of using ACT therapy (Growing the cells outside body in flasks), What if you did it in vivo. (Inside the Body) This can be done with Combinatorial Therapy with the help of the newly approved Yervoy (Ipilimumab) and Interluekin-2.

Melanoma and the Magic Bullet (Monoclonal Antibodies)

Click on for a copy of Melanoma and the Magic Bullet




“It is not the strongest of the species that survives, nor the most intelligent, but the one most responsive to change.”
~Charles Darwin~
Take Care,
Jimmy B
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Tuesday, March 29, 2011

A call for patients that failed PLX-4032 Melanoma Jim Breitfeller

Genentech has just opened a study for people who have taken the Plexxikon/Roche/Genentech BRAF inhibitor, also known as PLX 4032. This study is a combination trial using PLX plus a MEK inhibitor. Some folks from this board have been in the BRAF/MEK trial being run by GSK, and this new trial is similar. One criteria, though, is that you must have taken the Plexxikon drug and have developed resistance to that drug. Currently three sites are open: Dr. Gajewski in Chicago, Dr. Ribas in UCLA, and Dr. Gonzalez in Denver. Four more sites will open soon. You can go to this link to find out information about melanoma relevant clinical trials, including this one: http://www.emergingmed.com/networks/MRF



Source: Tim--MRF



“It is not the strongest of the species that survives, nor the most intelligent, but the one most responsive to change.”



~Charles Darwin~

Take Care,

Jimmy B

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Monday, January 31, 2011

Expanded access With RO5185426 in Patients With Metastatic Melanoma..Jim Breitfeller

Expanded access With RO5185426 in Patients With Metastatic Melanoma.
The locations are limited.

The drug is called RO5185426, which is interchangeable with PLX4032 and RG7204. Also, you must be Braf positive and failed a prior therapy.

Expanded access With RO5185426 in Patients With Metastatic Melanoma




“It is not the strongest of the species that survives, nor the most intelligent, but the one most responsive to change.”

~Charles Darwin~
Take Care,
Jimmy B

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Monday, October 25, 2010

The Future of Immunotherapy.. Emerging concepts in biomarker discovery.Melanoma.Jim Breitfeller

Emerging concepts in biomarker discovery!!!!!2009

Take away: Get your blood and tumors profiled for Biomarkers. It could lead you to the right therapy to do.

A table of:
Emerging biomarkers potentially useful for the immunotherapy of cancer.

A Table of:
Emerging biomarkers potentially useful for the immunotherapy of cancer.



Source:Emerging concepts in biomarker discovery; The US-Japan workshop on immunological molecular markers in oncology



Dr. Kirkwood give his honest opinion on the clinical trails to date and where they are heading in the future incliding Biomarkers.



Please take an hour out of you day to view and listen, It may save you or your love one from doing the wrong therapy.

Dr. Kirkwood talks about autoimmunity through out the presentation
NIH Scientists Discover Secrets Of Helper T Cells Involved In
Autoimmunity.... Th17 cells!!!!!!









“It is not the strongest of the species that survives, nor the most intelligent, but the one most responsive to change.

”~Charles Darwin~

Take Care,
Jimmy B
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Monday, September 20, 2010

New Drugs Stir Debate on Rules of Clinical Trials..Melanoma - Jim Breitfeller

New Drugs Stir Debate on Rules of Clinical Trials..Melanoma -

New Drugs Stir Debate on Rules of Clinical Trials..Melanoma PLX4032


We should let the FDA ,Congress and Plexikkon know how us, the Patients feel about the clinical trial protocol process.
It doesn't smell right.
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Stop monkeying round with Our Life. We are just trying to survive.



Peter Hirth CEO Plexxikon


Try These. I am not sure of the CEO’s email. Just try and see if they bounce back.

kphirth@plexxikon.com CEO

phirth@plexxikon.com CEO


kglaub@plexxikon.com President








Richard Pazdur
Richard Padzur to run its new Office of Oncology Drug Products (OODP)
pazdurr@cder.fda.gov

Plexikkon should open a compassionate care use to the patients that have no other trial available.Peter Hirth, show some compassion to your customers/patients.

Please Make the right choice!!!






Please write about your disgust to the above email addresses

Thanks in advance



“It is not the strongest of the species that survives, nor the most intelligent, but the one most responsive to change.”
~Charles Darwin~

Take Care,
Jimmy B
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Thursday, August 26, 2010

Promising new Melanoma Drug, PLX4032: Questions and Answers

Promising new melanoma drug: Questions and answers


By Liz Szabo, USA TODAY

A new drug for the treatment of advanced melanoma is generating rare excitement and optimism among cancer doctors. USA TODAYasked experts to explain the drug's benefits and limitations.
Q: Why is the drug promising?

A: The drug, PLX4032, shrank tumors in 26 of 32 melanoma patients who had a key mutation in their tumors, according to a study in today's New England Journal of Medicine.

That's "remarkable," because patients in small, early trials such as this often get no benefit at all. Typically, experimental drugs shrink tumors in only 5% to 10% of patients, says Keiran Smalley of the Moffitt Cancer Center and Research Institute in Tampa, who wasn't involved in the study.

Some patients began showing improvement within only a few days, says Lynn Schuchter of the University of Pennsylvania, who also worked on the study.

Q: Were those patients cured?

A: In two patients, tumors disappeared, and some patients' disease remains in check. It's too early to know whether patients will stay in remission, however. The median remission was more than seven months, the study says.

But even shrinking tumors is relatively rare in advanced melanoma that has spread to other organs. The two approved drugs for melanoma — a chemotherapy called dacarbazine and an immune therapy called interleukin-2 — shrink tumors for only about 10% to 20% of patients, the study says.

Q: Does the drug help all patients?

A: No, it helps only the roughly 50% of patients whose tumors have the mutations in a gene called BRAF, the study says. Patients who don't have the mutation get no benefit.

If the drug is approved, doctors probably will begin testing all patients with advanced melanoma for the mutations. A test such as this probably would cost a few hundred dollars, says the study's lead author, Keith Flaherty of Massachusetts General Hospital in Boston.

Q: How is the drug different from other treatments?

A: Unlike conventional chemo, which kills all fast-growing cells, the new drug — also known as RG7204 — is considered a "targeted therapy" because it aims to block a specific mutation found only in certain melanoma cells.

Q: What about side effects?

A: Because PLX4032 leaves most healthy cells alone, it causes far fewer side effects than chemo, Flaherty says. High-dose IL-2, for example, can cause life-threatening side effects and is given only in the hospital, so patients can be closely monitored. Patients can take PLX4032, a pill, at home.

But even relatively mild side effects can become bothersome over time, says Vernon Sondak of the Moffitt Cancer Center and Research Institute in Tampa, who wasn't involved in the study.

If PLX4032 helps keep patients alive a long time — either by itself or when combined with other experimental drugs — patients may be more troubled by fatigue, rash and joint pain, Sondak says.

Q: Who financed the study?

A: The study was paid for by the drug's co-developers, Plexxikon and Roche Pharmaceuticals.

Q: What will it cost?

A: The companies haven't announced a price, because the drug is still in early trials. Flaherty notes, however, that many new cancer therapies cost $5,000 to $7,000 a month.

Q: Is it possible to get the new drug?

A: Yes. Doctors are still enrolling patients with advanced melanoma in a large trial of 680 patients who haven't gotten other treatment. Additional studies are expected to be launched next year, Flaherty says. More information about PLX4032 is available by calling 888-662-6728.

Other experimental drugs for melanoma — including ones very similar to PLX4032 — also are being developed. More information can be found at clinicaltrials.gov

Q: When might the drug be approved?

A: If additional studies are positive, Roche Pharmaceuticals plans to apply for FDA approval in 2011, spokeswoman Amy Berry says. In June, PLX4032 was given "fast-track" status by the Food and Drug Administration — a process that helps speed up development of drugs that fill unmet needs.

Source:http://www.usatoday.com/news/health/2010-08-26-melanomaQA_ST_N.htm


Since it helps only the roughly 50% of patients whose tumors have the mutations in a gene called BRAF, Ipilimumab,PD-1 and Interluekin-2 would be other therapies to try.

My gut feeling is that we can beat Melanoma with combinatorial Therapy.

We just need to get the Drug companies and the Oncologists on board




“It is not the strongest of the species that survives, nor the most intelligent, but the one most responsive to change.”

~Charles Darwin~

Take Care,

Jimmy B

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The Cancer Trial Bristol and Roche Must Do Now..Melanoma ..Jim Breitfeller

The Cancer Trial Bristol and Roche Must Do Now

Author: Robert Langreth
Treatments
Aug. 26 2010 - 12:31 pm

Novartis’ Gleevec is an exception. Curing cancer won’t happen with a single drug. Common cancers are too complicated and have too many mutations. The solution, many cancer researchers hope, are smart drug combos that hit multiple tumor weak points at once.

But what happens when two drug companies own the experimental drugs that need to be combined?

The small world of melanoma all of sudden faces this lucky problem. For decades melanoma was a barren wasteland of drug development. Almost nothing worked.


Image via Wikipedia
Now there are two promising new drugs. Ipilimumab from Bristol-Myers Squibb stimulates the immune system against cancer. Based on pioneering research by James Allison, the drug boosted patient survival by three months, a big trial found.

Meanwhile, PLX4032 from Roche and Plexxikon works via a different mechanism and shrinks tumors in a mind-boggling 80% of melanoma patients whose tumors have a mutation called in a gene called BRAF, These results were published this week in the New England Journal of Medicine. But the effects often don’t last long; resistance hits after a matter of months. It has not been proven to extend how long patients live. GlaxoSmithkline is testing a similar drug.

The obvious thing to do: combine the Roche and Bristol drugs in a trial to see if both drugs produce a powerful one-two punch. The logic, points out Memorial Sloan Kettering melanoma expert Paul Chapman, is compelling. Both drugs work by different mechanisms and don’t have obvious overlapping side effects. The Roche braf drug kicks in quickly, which can help symptoms, while the Bristol-Myers drug takes months to act, only occasionally produces big tumor shinkage. But when it does the effects can be almost miraculous.

Dead tissue produced by the anti-tumor effects of the Roche drug, could help stimulate the immune system and enhance the impact of the Bristol drug. In test tube experiments, blocking BRAF protein in melanoma cells appeared to enhance the ability of the immune system’s killer t-cells to recognize melanoma, according to a recent Massachusetts General Hospital study.

The good news, says Massachusetts General Hospital’s Keith Flaherty, is that both Bristol and Roche appear willing to collaborate. Flaherty says that cancer doctors cajoled the two sides to discuss a combo trial at the June ASCO meeting of cancer doctors. “This discussion went better than any of us expected,” he says. Both Roche and Bristol confirmed to Forbes that they are exploring combination therapy.

“Everyone wants to do it. It is a no-brainer,” says Chapman. But the logistics are extremely tricky, he says, and a trial design has not been finalized. Whose drug is the “control therapy” to which the combo is compared? Which company gets the patent on the combo, if there is one? Who gets the blame if the combo produces nasty side effects? “There are a lot of wild cards here, we are working on this, it is going to happen,” says Chapman. Another issue: both companies are naturally focused on getting their drugs approved individually first.

It is heartening that Bristol and Roche are amenable to getting together. Too often, corporate bureaucracy has trumped patient needs. One exception is a dual cancer drug trial that Merck and AstraZeneca announced last year.

Flaherty says that a combination trial won’t begin until April of 2011 at earliest. That is far too long. For melanoma patients’ sake, Bristol and Roche need to begin this trial sooner rather than later.

Source:http://blogs.forbes.com/robertlangreth/2010/08/26/the-cancer-trial-bristol-and-roche-must-do-now/?boxes=businesschannelsections




This combinatorial is another therapy that has a real potential. It combines IFN,DTIC,Anti-CTLA-4 (Ipilimumab) and IL-2. it has worked for a number od Melanoma patientss.

We need to get these drug companies to work together for the common good. There is enough room for all the drug companies to get a piece of the Melanoma Action. One therapy will not work.

Combinatorial therapy is the road to success.

"FOLLOW THE YELLOW BRICK ROAD"

“It is not the strongest of the species that survives, nor the most intelligent, but the one most responsive to change.”

~Charles Darwin~

Take Care,
Jimmy B

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Sunday, August 22, 2010

PLX4032 May Clear Path for Individualized Treatment of Metastatic Melanoma..Jim Breitfeller

PLX4032 May Clear Path for Individualized Treatment of Metastatic Melanoma

Elsevier Global Medical News. 2010 Aug 20, MG Sullivan

Chicago -- A drug that targets metastatic melanoma with mutations in the BRAF oncogene may be the first step on a path to individualized chemotherapy for patients with these formerly untreatable cancers.

"We are rapidly unraveling the molecular underpinnings of these tumors, and discovering the mechanisms by which they drive melanoma growth. These insights allow us to develop and select drugs on the basis of every patient's individual genome," Dr. Hensin Tsao said at the American Academy of Dermatology's Academy 2010 meeting.

PLX4032 is the first drug to successfully shrink both cutaneous and internal metastases of BRAF-mutated melanomas, said Dr. Tsao, a dermatologist who is director of the Massachusetts General Hospital Melanoma Genetics Program in Boston. His colleague, Dr. Keith Flaherty, is about to publish data from the drug's phase II trial of 87 patients; 81 percent of those with the BRAF-mutated melanoma responded with a 30 percent or more shrinkage of the targeted lesions.

After a phase I safety and dose-finding trial, investigators settled on an oral dose of 960 mg twice daily for the phase II study. The effect was little short of remarkable, Dr. Flaherty, director of developmental therapeutics at the Massachusetts General Hospital Cancer Center, said in an interview.

"My first responding patient had cutaneous and internal metastases, and the cutaneous metastases were clearly getting better right in front of our eyes," he said. "We have seen this in some other areas of cancer, but never in melanoma, which before this was a clinical scenario with an unmet need for therapy."

PLX4032, first engineered by the Berkeley, Calif., company Plexxikon Inc. and being developed in partnership with Roche, is not a foolproof cure, Dr. Tsao said in an interview. "It's clearly a huge leap forward for the patients who responded so rapidly, yet most are still progressing despite being on the drug. It's the best stun we've ever seen for melanoma, but it's not a permanent kill."

Sustained response in the phase I and II trials has varied from only two months to up to two years, Dr. Flaherty said. He could find no significant predictors of progression or response among the group except for initial tumor number and size. Typically, he said, the patients with the greatest mass of metastatic disease had the shortest duration of response, while those with a smaller tumor burden had a longer duration of response.

"When you have metastatic melanoma, your days are numbered--and numbered in a way we can't predict when metastatic disease is diagnosed," Dr. Flaherty said. "What this therapy does is push out the time until the disease worsens. We are not yet smart enough to understand what it is that allows a tumor to work its way around the drug's activity."

Chemotherapy-resistant cancers are nothing new, Dr. Tsao noted. What will be new is the full investigation of melanoma's genetic pathways, and the development of drugs to block them in multiple ways. "The next frontier will be to understand all the ways that melanoma can outsmart treatment. We may have to use multiple therapies to corner it. So a full discovery of all melanoma's potential vulnerabilities is very important."

Source:http://www.oncologystat.com/news/PLX4032_May_Clear_Path_for_Individualized_Treatment_of_Metastatic_Melanoma.html

The quote of the day

"The next frontier will be to understand all the ways that melanoma can outsmart treatment. We may have to use multiple therapies to corner it. So a full discovery of all melanoma's potential vulnerabilities is very important."

~Dr. Flaherty~




“It is not the strongest of the species that survives, nor the most intelligent, but the one most responsive to change.”
~Charles Darwin~

Take Care,
Jimmy B

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Tuesday, July 20, 2010

Targeted therapy for metastatic melanoma: From bench to bedside..Jim Breitfeller

Targeted therapy for metastatic melanoma: From bench to bedside
Author: Wen-Jen Hwu, MD, PhD

Malignant melanoma is well known for its aggressive clinical behavior, propensity for lethal metastasis and therapeutic resistance. However, in the last decade, considerable excitement has been generated by the identification of genetic mutations in various components of signaling pathways involving melanoma initiation and progression, particularly those involved in the MAP and PI3 pathways. Most recently, clinical trials of pharmacological targeting of relevant molecular targets have demonstrated dramatic response even in patients with late-stage melanoma.

The emerging insights into the mechanisms of activation and negative regulation of innate and adaptive immunity to tumors have provided another breakthrough in melanoma therapy. A new family of immune-based agents of monoclonal antibodies that exert their functions by tampering with immune system cell molecules causing an enhancement of antitumor immune responses has entered clinical trials. In general, these new antitumor agents are designed to break down the barriers to tumor tolerance/immunity. This new group of agents holds promise for at least additive effects with conventional therapies, as well as signal transduction pathway targeted therapies.

Targeting signal transduction pathways

Several key genetic lesions governing melanoma initiation and progression have been identified, the earliest and most common being a point mutation (T1799A) in the BRAF proto-oncogene, which is detected in approximately 60% of metastatic melanoma. BRAFT1799A encodes BRAFV600E, a constitutively active protein serine kinase that elicits sustained activation of the BRAF® MEK1/2® ERK1/2 MAP kinase pathway.

In addition to BRAF, RAS oncogene (rat sarcoma viral oncogene homolog) is another constituent of the MAP kinase pathway. RAS mutations (in one of three isoforms) are found in approximately 20% of metastatic melanoma. RAS is capable of turning on several downstream pathways, including BRAF and other components of MAP kinase pathways, the PI3 kinase pathway, and the RAL-GDS pathway. In general, if a RAS mutation is present, there will be no BRAF mutation. However, the combination of mutated BRAF and silencing of PTEN expression is common in human melanoma (~20%). Dankort and colleagues have demonstrated in a preclinical model that “BRAFV600E cooperates with PTEN loss to induce metastatic melanoma.”

The prevalence of RAS/RAF alterations in human cancer has prompted significant efforts in the development of drugs targeting the MAP kinase pathway. Many of these are currently in clinical trials in patients with metastatic melanoma. Studies with the broad spectrum RAF inhibitor sorafenib (Nexavar, Bayer) as a single agent in patients with BRAF mutated melanoma have proved disappointing. What was unclear from these studies was whether the lack of efficacy was because BRAF was not a critical target or because of incomplete blocking of BRAF by sorafenib.

Since 2005, several BRAF inhibitors have entered clinical trials. These inhibitors are grouped in two categories: BRAF selective inhibitors, and broad spectrum multiple kinases inhibitors with high potency against BRAF.

BRAF inhibitors

PLX4032 (Plexxikon, also known as RO5185426) is a selective BRAF inhibitor and is the first of its kind tested in advanced melanoma. A response rate of 70% in 32 BRAF mutated melanoma patients was reported in the phase 2 study. In general, PLX4032 is well tolerated and most common toxicities include mild-to-moderate skin rash, sun sensitivity, fatigue, arthralgia and keratoacanthoma. Currently, there are two ongoing PLX4032 trials.


Wen-Jen Hwu

The first is a phase 2 study of PLX4032 as a single agent in BRAF mutated melanoma patients who have failed standard therapy for metastatic disease. This study will hopefully confirm the high response rates observed in previous phase 1/2 studies. The second is a phase 3 trial comparing PLX4032 with dacarbazine (standard chemotherapy) in chemotherapy-naive patients with BRAF mutated metastatic melanoma. Seven hundred patients will be enrolled; the primary endpoint is OS.

Another BRAF selective inhibitor is GSK2118436 (GlaxoSmithKline). This drug has already shown promising antitumor activity in the phase 1 portion of a study. The phase 2 portion is ongoing. The impressive high level of antitumor activity of BRAF selective inhibitors indicates that both PLX4032 and GSK2118436 have single-agent activity; BRAF is an important target in melanoma.

Currently, there are at least two nonselective BRAF inhibitors. XL281 (Bristol-Myers Squibb) and RAF265 (Novartis) are in phase 1 testing. Results are expected in the near future.

MEK is a kinase and is immediately downstream of BRAF. It is never mutated in cancer but is activated by BRAF and, in turn, activates the rest of the MAP kinase pathway. In the laboratory, MEK inhibitors have shown activity in a number of BRAF mutated cancers. Currently, there are many MEK inhibitors in clinical trials.

AZD6244 (AstraZeneca) is a MEK inhibitor that has been evaluated most extensively in melanoma. A phase 2 study comparing AZD6244 with temozolomide (oral chemotherapy) has found an objective response rate of 12% among 45 BRAF-mutated patients. However, patients in this study who received temozolomide had a similar response rate and PFS.

Melanomas from acral lentiginous, mucosal and chronic sun-damaged sites frequently harbor activating mutations and/or increased copy number in the KIT tyrosine kinase receptor gene, which are very rare in more common cutaneous melanomas. Multiple case reports and early observations from clinical trials suggested that targeting mutant KIT with small molecule KIT inhibitors such as imatinib (Gleevec, Novartis) and/or dasatinib (Sprycel, BristolMyersSquibb) is efficacious.

Although the dramatic clinical activity of BRAF selective inhibitors is a major breakthrough in the treatment of this disease, there are many hurdles to overcome to optimize this targeted therapy approach. Many of the patients who initially responded to PLX4032 have subsequently progressed with a median duration of response of approximately 8 months. The mechanisms that cause resistance are largely unknown.

Recently, a number of preclinical studies have demonstrated that BRAF inhibitors activate MEK and MAP kinases in melanoma cell lines with wild-type BRAF, including cell lines with mutant NRAS. These studies suggest at least one potential mechanism of resistance is through continued activation of the RAS-RAF-MEK-ERK signaling pathway. Thus, combination agents that target multiple components of this pathway have great potential to overcome drug resistance. Several ongoing clinical trials using the combination of BRAF and MEK targeted agents will be able to test this hypothesis.

Targeting tumor immunity barriers

Since the discovery of monoclonal antibodies in the late 1970s, it has become clear that these antibodies, which are of defined specificity and can be produced in large amounts, had potential for the management of various diseases, including malignancies.

The key property of antibodies to be used as therapeutic tools is their behavior as high-avidity ligands to protein or glycoprotein. Most recently, a new group of monoclonal antibodies that enhance the cellular immune response against cancer have entered clinical trials. These agents bind molecules on the surface of immune system cells. They either provide activating signals to lymphocytes and antigen presenting cells or block the action of receptors that normally down-regulate the immune response.

A humanized monoclonal antibodies (MDX-010, Medarex) against cytotoxic T-lymphocyte antigen 4 (CTLA-4) is the first to reach clinical trials. CTLA-4 is only expressed on the cell surface of activated T cells and regulatory CD4+ CD25+ T cells. In murine models, systemic treatment with transplantable immunogenic colon carcinoma cells with anti-CTLA-4 monoclonal antibodies induced complete tumor regression of established tumors through an immune response found to be critically dependent on the activity of cytotoxic T lymphocytes.

Various phase clinical studies have been conducted on the two anti-CTLA-4 monoclonal antibodies, ipilimumab (Bristol-Myers Squibb) and tremilimumab (Pfizer), as monotherpy, in combination with vaccines or other immunotherapies, and in combination with chemotherapies. Blockade by the T-cell inhibitory molecule CTLA-4 results in antitumor response with overall response rates from 10% to 20%. Most adverse events involve autoimmune toxicities, such as dermatitis, uveitis, colitis/enterocolitis, hepatitis and hypophysitis.

4-1BB (CD137) is a surface glycoprotein that belongs to the TNF receptor family. It is expressed by activated, but not resting, T and NK cells. A humanized anti-4-1BB monoclonal antibody (Bristol-Myers Squibb) has been tested in clinical trials. However, the phase 2 study in refractory melanoma was discontinued in May 2009 due to unusually high incidence of grade-4 hepatitis.

Programmed death 1 (PD-1) and its ligands, PD-L1 and PD-L2, deliver inhibitory signals that regulate the balance between T cell activation, tolerance and immunopathology. In vivo studies have shown B7-1 (CD80) is also a binding partner for PD-L1, and their interactions can lead to bidirectional inhibitory response in T cells.

PD-L1 is expressed on many tumors including melanoma and is a component of the immune suppression by the tumor microenvironment. Phase 1/2 experience of the anti-PD-1 monoclonal antibody, MDX-1106 (Medarex, Ono-4538), in refractory or relapsed malignancies was presented at the 2009 ASCO Annual Meeting. Clinical activity against melanoma was observed and, more importantly, no MDX-1106 related severe adverse events were noted.

In 2009, at M.D. Anderson Cancer Center, we participated in a phase 1 study of anti-PD-L1 monoclonal antibody (MDX-1105, Medarex) in refractory metastatic melanoma. MDX-1105 has been tolerated by all patients. Most adverse events were mild and were related to inflammatory responses in the tumors, not immune-related toxicity. Clinical responses were observed at all dose levels (1 mg/kg to 10 mg/kg every 2 weeks). Durable partial responses and stable disease were noted in patients whose disease had progressed after at least one, and as many as five, prior systemic therapies. Based on the low toxicity and impressive clinical activity, a phase 2 study of MDX-1105 in advanced melanoma is warranted.

In summary, the treatment of metastatic melanoma is changing rapidly due to the great success in translational research from bench to bedside. Although such studies, to date, have focused on the treatment of advanced metastatic disease, the approaches of targeting signal transduction pathway, as well as targeting tumor immunity barrier, hold great promise to the development of preventive strategies and personalized therapies in malignant melanoma.

Wen-Jen Hwu, MD, PhD, is a professor in the department of melanoma medical oncology at The University of Texas M.D. Anderson Cancer Center and is a member of the HemOnc Today Editorial Board.

Source:http://www.hemonctoday.com/article.aspx?rid=65856


“It is not the strongest of the species that survives, nor the most intelligent, but the one most responsive to change.”

~Charles Darwin~

Take Care,
Jimmy B
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Thursday, May 20, 2010

Smart bombing Melanoma..Jim Breitfeller




Smart bombing Melanoma

“It is not the strongest of the species that survives, nor the most intelligent, but the one most responsive to change.”

~Charles Darwin~

“Most tumors arise from a single normal cell through a sequential evolutionary process of mutation and selection. Tumors are initiated by escaping non-immune surveillance, which includes defective DNA repair, gene alternation, resistance to apoptosis and loss of intercellular contact inhibition. Tumor cells harbor mutations in a number of critical genes that provide selective advantages at various stages during the evolution of the tumor. The tumor cells that circumvent the tumor suppressor mechanisms of the non-immune surveillance process are edited by the immune system, resulting in the selection of a resistant tumor variant. The selection of the tumor cell is further shaped by its interactions with cells and other factors in its microenvironment. Tumor evolution is thought to adhere to Darwinian principles by escaping both non-immune (intrinsic) and immune (extrinsic) responses against self-altered tumor cells. At end-stage, tumors have escaped both non-immune and immune surveillance with increased threshold of apoptosis. Combination therapy has been proposed, by exploring the non-immune and immune suppressive nature of the tumor, and has been found to have a therapeutic efficiency on tumor regression as compared with monotherapies. The combination of immunotherapy and other different modalities, especially vaccines, with conventional anticancer therapies with optimized dosage and scheduling can offer synergistic antitumor effects.”

Source: http://www.cellbiolint.org

Chemotherapy

The combination of chemotherapy and immunotherapy is synergized as chemoimmunotherapy; chemotherapy can kill or slow the growth of cancer cells and immunotherapy stimulates or restores the ability of the immune system to fight against cancer (Emens and Jaffee, 2005; Gulley et al., 2007). Apoptotic death, particularly massive apoptosis by chemotherapy, can be a priming event for antitumor immunity, allowing the tumors to act as its own vaccine by releasing a large amount of tumor antigen. This priming event sets the stage and the direction of the immune response. With the right tumor antigen, the activated T-cells (CTL’s) Cytotoxic T Lymphocytes can zero in on their target, the tumor cell. Smart bombing Melanoma!!!!!



Source: http://thefutureofthings.com/articles/1012/smart-bombing-cancer.html


Source: NCI



“It is not the strongest of the species that survives, nor the most intelligent, but the one most responsive to change.”

~Charles Darwin~

Take Care,
Jimmy B
Photobucket

Tuesday, March 9, 2010

Future Directions in Targeted Therapy for Melanoma..Jim Breitfeller

Future Directions in Targeted Therapy for Melanoma

“Our improved understanding of the molecular pathways that underlie the progression of melanoma has revealed numerous potential therapeutic approaches. We now face the challenge of developing targeted therapies directed at signaling pathways that are activated through mutations. Single-agent therapy is unlikely to be markedly successful,so there is also a pressing need to evaluate combination therapies, both with multiple targeted therapies and with targeted therapies plus conventional chemotherapeutic agents. It is hoped that these approaches will result in effective treatment options for patients with metastatic melanoma.”

~Dr. Keith T. Flaherty~


The Complexity of the T cell

In the midst of many promising discoveries, it became apparent to Dr. Allison and other researchers working in the field that stimulation of T cell response was more complicated than originally thought. As Dr. Allison and others discovered, first the T cell uses a structure called the antigen receptor to recognize a foreign antigen in the system (created by infecting viruses or bacteria, or new antigens found in tumor cells). Using an automobile as an analogy, Dr. Allison likens this step to turning the key in the car's ignition. "The car is running, but it's not going anywhere."

Recognition is not enough. Dr. Allison explains: "A second signal is also required, which, in the car analogy, would be the foot on the gas pedal." This second signal occurs when a particular family of molecules called the B7 molecule engages a molecule known as CD28 found on the surface of the T cell. Only these molecules are capable of initiating T cell response.

The final part of the car analogy is the immune system's brake -- an immune-regulating molecule, whose function was discovered by Dr. Allison's lab, known as cytotoxic T lymphocyte-associated antigen-4 (CTLA-4). CTLA-4 inhibits activated T cells in the immune system, preventing them from attacking the body's own tissues

It is now well accepted that recognition of specific antigen by the TCR is not sufficient for activation but that a second antigen nonspecific "co-stimulatory" signal is required. We have demonstrated that this second signal is provided the co-stimulatory receptor CD28 upon recognition of its counter-receptors, members of the B7 family, on the antigen-presenting cell. CD28 engagement is required under most situations for IL-2 production and proliferation. The lack of a CD28-mediated co-stimulatory signal upon TCR engagement can result in the induction of a long-lived state of nonresponsiveness.

We have recently found that co-stimulation is more complex than previously thought. CTLA-4, a homolog of CD28, also binds members of the B7 family, and binds them with affinities much higher than CD28. A wealth of data accumulated in the past few years show that CTLA-4 is an important downregulator of T cell responses. We have proposed that CTLA-4 plays a critical role in both the initiation and termination of T cell responses. According to this view, T cell activation is a dynamic process that is determined by the strength of the TCR signal; the strength of co-stimulation provided by CD28; and the magnitude of inhibitory signals generated by CTLA-4.

We have also demonstrated that CTLA-4 blockade can be used in combination with other methods of immunopotentiation or even conventional chemotherapy to obtain rejection of resistant tumors. We are currently examining the cellular and molecular mechanisms of the anti-tumor effect. The strategies we have developed in the mouse are currently in clinical trials for evaluation of effectiveness in treatment of prostate cancer and melanoma

Source: Sloan-Kettering Institute

"I believe that we are on the verge of bringing the manipulation of immune responses into the mainstream of cancer therapy," Dr. Allison said. "Recent work in cancer biology has shown that the genetic instability that is inherent in cancer results in a large number of mutations in proteins that create new antigens that the body has never seen before and ought to be readily recognized as foreign by the immune system. If we can kill some tumor cells, either as a result of a vaccine or treatment with more-conventional therapies, using agents such as anti-CTLA-4 ought to result in induction of potent immunity to these new targets. Thus, I believe that it is not unreasonable to think of many of the new targeted therapies as immunosupportive, and to use them in conjunction with the new approaches to enhancing immune responses."

~Dr. James Allison~

We are on the Verge of Harnessing the Immune System to recognize Melanoma cells as foreign. How this plays out will depend on if the Pharmaceutical companies like Bristol-Myer Squibb, Novartis, Pfizer, Hoffman La Roche, Plexikkon and other come together as one, to fight this Monster of a disease. Time will only tell. We owe it to the Patients.






Take care

Jimmy B
Photobucket
Melanoma_Missionary


"Today might be the worst day of your life...but tomorrow could be the best. You just have to get there."
~Unknown~

http://www.box.net/shared/kjgr6dkztj

Melanoma and The Magic Bullet (Monoclonal Antibodies)

Friday, February 26, 2010

Combinatorial Therapy, Will the Big Pharmaceutical Companies do what Is Ethically Right?Melanoma..Jim Breitfeller

Combinatorial Therapy, Will the Big Pharmaceutical Companies do what Is Ethically Right?




They include Plexikkon,Bristol-Myer Squibb, Pfizer, La Roche and Novartis.


I and other researchers have come to the conclusion that Combinatorial Therapy may be the only way to beat The BEAST, Melanoma



“A very obvious combination that we are trying to move forward now is PLX4032 with ipilimumab. There is unanimity among the academic researchers that this must be investigated. Both companies see the logic, but are reluctant with neither of their drugs yet being FDA approved. As you know ipilimumab (and tremelimumab) have not overwhelmed the FDA yet as they were told to show a response rate greater than 10% and neither drug could do so. Most melanoma researchers believe that there are additional patients who get real and long-term benefit without having their tumors shrink significantly in size, but the randomized trials are needed to show that. The worrying sign is the outcome of the tremelimumab randomized trial. So, now we are down to waiting for the results of the dacarbazine vs. dacarbazine plus ipilimumab phase III trial. If this is negative, we are in trouble as ipilimumab will have no clear path forward with the FDA. If it’s positive, then the idea of moving ahead with combinations becomes much, much easier. But, even it that trial is negative, we know that CTLA-4 blockade can induce phenomenal responses in some. So, in that case, we have to figure out (1) who those patients are and, (2) how to make those responses happen in more patients. The other way of thinking of #2 is that PLX4032 doesn’t work for as long as we would like and that making those responses more durable would be desirable.”


~ Dr. Keith Flaherty ~


“ Mike Weber was kind to forward your paper and email. It appears that you have a very good sense of, and interest in, the immune response to melanoma and to cancer in general. I believe you are right that timing of the various components of the immune response, especially with combination therapies, is important, just as it is in the orchestration of a beautiful symphony.”


~ Dr. Craig Slingluff ~



Dr Markovic,. I thought you might be interested in this combinatorial therapy

“We actually just submitted a paper to this affect in a small clinical trial where we used a conventional chemotherapeutic agent to induce a systemic anti-tumor immune response by simply timing drug delivery. And, it worked! It was a small study, so the data is only descriptive. I'm gearing up to move to a large trial right now.”


~Dr. Svetomir Markovic~



“To answer your last question first: Mutations in B-Raf and N-Ras have been shown to cluster at specific nucleotides. This strongly suggests that there is a cellular mechanism which targets these sites in each gene. However, you are probably right, that anti-CTLA4 and IL2 are working by enhancing immune surveillance of your melanoma.”


~Dr. Natalie Ahn~



“In conclusion, the combination of MART-1/DC with concomitant tremelimumab is feasible in patients with metastatic melanoma, especially when tremelimumab is administered every 3 months, and results in durable objective clinical responses at the higher range of the expected objective tumor response rates with either therapy alone. Therefore, this combination warrants further study in patients with advanced malignant melanoma.”

~Dr. Antoni Ribas~



The rationale for the CTLA-4 and IL-2 combination is once you activated the CD4+ Tcell and it crossprime the CD8+ Tcell , the IL-2 needed for the maintenance and functionality of the CD8+ T-cell.
If lymphocytes are cultured in the presence of Interleukin 2, it results in the development of effector cells which are cytotoxic to tumor cells.

“Fine theory but just theory that has never been tested in relevant clinical setting…”


~Dr. John M. Kirkwood~

"Glad to see your post on this series. From our perspective, the melanoma community isn’t waiting for a “miracle” to fall out of the sky to help patients. It’s clear that no single drug will likely effectively treat the disease; instead, a combination of drugs may be the answer. The Melanoma Research Foundation (MRF) is coordinating the Melanoma Breakthrough Consortium to accelerate research by bringing together leaders in drug development, laboratory and clinical research to find effective treatments. This collaboration will take years off the process. Patients with advanced melanoma have few or no treatment options and there’s no doubt in the urgency of moving forward to test new therapies today. More information is available at http://www.melanoma.org."

~Tim Turnham~
Executive Director
Melanoma Research Foundation




This is why we the patients need the Pharmaceutical companies to work together. Each therapy will not work alone as a single agent. The response rate is between 10 and 22 percent for each therapy. If you do a sequential treatment with the proper dosage and timing, you will see a synergistic outcome.

“There are three parts of the equation in a clinical trial. There’s who has control, who gets the reward, and who takes the risk. Patients take all the risk, they have no control, and they get no reward. Patients ought to be the ones driving the process and get the reward out of it and have the control, since they are the ones that take the risk.”


~Greg Simons~


If we are taking all the risk, shouldn’t we have a say in our Destiny?
“We need to all work together for the common good of the Melanoma Patients”
“We need to take greed out of the equation and just do what is ethically for humanity”


~Jimmy B~

Which elevator will you, The Pharmaceuticals Companies will Take?



Take Care,

Jimmy B
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Monday, February 22, 2010

A Roller Coaster Chase for a Cure, Dr. Keith Flaherty Story..Melanoma..Jim Breitfeller

A Roller Coaster Chase for a Cure, Dr. Keith Flaherty Story

Published: February 21, 2010

PHILADELPHIA — His patient, a spunky Italian-American woman in her 60s, was waiting in an exam room down the hall for the answer: Was the experimental drug stopping her deadly skin cancer?


THE INVESTIGATOR Dr. Keith Flaherty oversees the testing of a drug known as PLX4032 calling it the best hope against melanoma “because it is based on what makes cancer tick.”


But as Dr. Keith Flaherty read out the measurements of her tumors from the latest CT scan, he could not keep the distress from his voice.

“She’s worse,” he said to the clinical trial nurse at the University of Pennsylvania’s melanoma clinic.

Source:http://www.nytimes.com/2010/02/22/health/research/22trial.html?pagewanted=1

A Roller Coaster Chase for a Cure, Dr. Keith Flaherty Story


As you can read, The research doesn't happen over night. You need a clinical Researcher that believes in the science.

I myself believe in our approach in how to get the host's immune system to see the Melanoma Cancer tumor cells. I have pages of Universities, Hospitals and Drugs companies following my blog at one time or another.

I even got this note from a world renowned Clinical Researher:

Dear Mr. Breitfeller,

Mike Weber was kind to forward your paper and email. It appears that you have a very good sense of, and interest in, the immune response to melanoma and to cancer in general. I believe you are right that timing of the various components of the immune response, especially with combination therapies, is important, just as it is in the orchestration of a beautiful symphony. I wish you success in your treatments and in your work to understand and to explain the immune response to cancer.

Craig Slingluff

Craig L. Slingluff, Jr. M.D.
Joseph Helms Farrow Professor of Surgery
Division of Surgical Oncology
Vice-Chair for Research
Director, Human Immune Therapy Center
University of Virginia

I have seen this treatment work. Until we have a Clinical trial in place, we won't know what the response rate would be.

We need more Clinical Researchers and Oncologists willing to step and think outside the box. Follow their passion and gut feelings to pursue a CURE. I tip my Hat to Dr. Keith Flaherty. Thanks for thinking outside the box!!!



Melanoma and The Magic Bullet (Monoclonal Antibodies)



Take care

Jimmy B
Photobucket
Melanoma_Missionary


"Today might be the worst day of your life...but tomorrow could be the best. You just have to get there."
~Unknown~

Friday, January 29, 2010

Braf PLX 4032 drug stopped working for first patient!!!Melanoma..Jim Breitfeller

This really crushes me. I was hoping this would be the beginning of the end for melanoma. Maybe it will with time and more research though.

I am not saying this will apply to anyone or everyone, but I think it is important that everyone needs to read this.

From MIF: Anyone currently on clincial trial of PLX 4032 or RO5185426 (jenniferslatton)

Posted: 3:20:38 pm on 1/27/2010 Modified: 4:12:04 pm on 1/27/2010

My 39-year-old husband is (as far as I know) the first U.S. patient to be in the Phase II BRAF-inhibitor trial funded by Roche Labs (partnering with Plexxikon). This trial uses the drug alone, without an arm that might include chemotherapy drugs (like the Phase III). He is on 960 mg twice aday of the drug, the highest tolerated dose. We are being treated at Moffitt in Tampa.

Clint began the trial the first week of October, about 15 weeks ago. We were astounded with the positive results and almost non-existent side effects (loss of body hair and mild muscle fatigue). That is, until last week, when the drug (PLX 4032/RO5185426) seems to have abruptly stopped working.

After much research we are learning that this is perhaps not an unexpected response. From my most recent reading it seems that for patients who are positive for the BRAF mutation (70% of melanoma patients), the BRAF-inhibitor may be necessary but not sufficient to create long-term effects. In my husband's case, we had genetic testing that determined the only mutation of note that could cause melanoma is the BRAF V600E mutation. But once he began the BRAF-inhibitor, the cancer seems to have created a new pathway around the drug. We will know shortly whether my husband's body has created new mutations and if so, which ones.

We are therefore, scrambling to find a new study that uses a combinatorial therapy of BRAF-inhibitor and MEK/RAS inhibitor (depending on what, if any, new mutations Clint has). I believe this combo therapy is likely to be the new frontier, and is already being studied in many places, including Australia and England. There is a combinatorial trial preparing to open in Nashville, TN, and I've got a call into their office to find out when. Now that the BRAF-inhibitor seems to have stopped working for my husband, we are in a race against the clock to once again stop his extremely aggressive, fast-moving disease.

In no way do I wish to "pull the rug out from under" any of you who are fortunate enough to be a patient on a BRAF-inhibitor trial. It has been an amazing drug! But I want to make sure we get our experience out there because we were very frustrated to not be given full disclosure about the likelihood of the disease finding new pathways. We had specifically asked our oncologist about a Plan B if the drug stopped working and he was dismissive of our question.

Now that we are in this scary place of seeing the disease quickly progress again, we have learned that the melanoma is now in his brain. This precludes Clint from most other clinical trials. If we had not let our guard down and had been looking ahead to combinatorial therapies, it would have made a big difference.


http://forum.melanomaintl.org/toastforums/toast.asp?sub=show&action=posts&fid=4&tid=9190

This is an indication that over time, Melanoma can mutate and change pathways to escape the immune system. As doctor's search for a cure, the BRAF therapy may end up as a "bridge therapy". Bascially something to fill in why they continue to look for more treatments.

I myself believe that the best way to overcome Melanoma is to use your own immune system.It can be done using a combination approach. Interferon,DTIC,Patrin-2,radiation,Anti-CTLA-4 and Interluekin-2. It is like a bicyle lock, you have to know the combination and proceed in the right order. The number of turns to the right or left corresponds to the doses and concentration.

Here is the combination, Good Luck!!!!!




Take Care,

Jimmy B
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Monday, November 9, 2009

Lifesaver... PLX-4032 Therapy for BRAF Mutations..Melanoma ..Jim Breitfeller

"Now, an incredible breakthrough. A tiny capsule that can stop even advanced Melanoma in its tracks.

It's called PLX 4032 — and the results are so swift and dramatic that it's got even the usually conservative medical community excited. Even better, this drug could mark the beginning of a cure for other forms of cancer. Already, it's giving some patients back their lives and, for people like 24-year-old Brendan Robbins, offering hope — just in time."

Reporter: Liz Hayes
Producer: Phil Goyen

Lifesaver... PLX-4032 Therapy for BRAF Mutations



Source:http://sixtyminutes.ninemsn.com.au/stories/927744/lifesaver-cancer

You may want to be checked for the BRAF Mutation.

Take Care,

Jimmy B
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Greetings to One and All

This Blog is dedicated My Brother Kenny B. who passed away in the late 1970's with Cancer before the Internet.

It was he, who showed me How to live and give back. He was wise beyond his years.



Kenny B




Jimmy and Dee

Carepage: Jimmybreitfeller
Jimmy Breitfeller


My Profile as of 2009

My photo
Last July (2005)I was riding my bicycle to work at the Eastman Kodak Research Labs about 3 miles from home. I was wearing a knapsack to carry my things to and from the labs. I started noticing an ache on my back. So I decide to go to the dermatologist. To make the long story short, it was cancer. I knew from my research that I would be needing adjuvant therapy. So I started communicating with Sloan Kettering, University of Pittsburgh Cancer Center, and a couple of others including the Wilmot Cancer Center at Strong. I realized that by telling my story, I might help someone else out there in a similar situation. So to all who are linked by diagnosis or by relation to someone with melanoma, I wish you well. Stay positive, read as much as you can (information helps to eliminate the fear associated with the unknown), and live for today, as no one can predict what tomorrow may bring. Jimmy B. posted 12/15/08

Disclaimer

The information contained within this Blog is not meant to replace the examination or advice of your Oncologist or Medical Team. The educational material that is covered here or Linked to, does not cover every detail of each disorder discussed.

Only your physician/Oncologist can make medical decisions and treatment plans that are appropriate for you. But, An Educated Consumer is a Smart consumer.

As Dr. Casey Culberson Said:

"The BEST melanoma patient is an ACTIVE PARTICIPANT in his or her treatment
(not a PASSIVE RECIPIENT)"

Melanoma and the “Magic Bullet” (Monoclonal Antibodies)

Just to let you know I posted the first draft of the Melanoma and the “Magic Bullet” (Monoclonal Antibodies). on Melanoma Missionary In the Shared File Section. you can download it for 19.95 (Only kidding) it is Free for the taking.


It is 33 pages long and may help you in your quest for the Yellow Brick Broad. Just to let you know it is only the first draft. Revisions are sure to come. I wanted to get it to the people that need it the most, the Melanoma Patients.

Preview:

So, where does Interluekin-2 (IL-2) come into play? According to Byung-Scok et al and recent reports, IL-2 is not needed for developmental CD4+ CD25+ Treg cells in the thymus but does play an important role in the maintenance and function in the peripheral.18 Peripheral is defines as secondary system outside the bone marrow and thymus. It entails the site of antigen, immune system interaction. IL-2 is required for the peripheral generation of Tregs based Abbas’s and colleagues research.19

IL-2 prevents the spontaneous apoptosis of the CD4+ CD25+ Treg cells. It has been reported that patients with multiple advance-stage tumors have elevated levels of Tregs within the tumor microenviroment.20 Interluekin-2 is the survival factor for CD4+ CD25+ Treg cells.21 If the addition of IL-2 is on or before the maximum propagation of the CD4+ T cells, the Tregs population can increase 5-fold in a 96 hour period based on certain growth mediums.

By controlling the addition of the endogenous IL-2, one has a knob to turn and can lead to the control of the expansion of the Tregs. When you combined this control with the anti-CTLA-4 blockage, you can shift the balance of the immune response.

Now here is the catch. The maintenance and function of the CD8+ T-cells require CD4+ cells which secrete IL-2. So we don’t want to deplete the CD4+ cells, we want to control the expansion of the Tregs which are a subset of the CD4+ cells. It has been postulated by some researchers that the Anti-CTLA-4 blockage also suppresses the Treg function in a different mechanism. By using IL-2 as the rate limiting factor, we can suppress the CD4+ CD25+ Treg cell expansion by controlling the concentration and timing of the Inerluekin-2 at the tumor microenvironment.


The Interluekin-2 plays another role in this Melanoma Maze. In a study by Janas et al, Il-2 increases the expressions of the perforin and granzyme A, B and C genes in the CD8+ T-cells. This increase expression causes the CD8+ T-cells to mature into Cytoxic T Lymphocytes (CTLs). The exogenous IL-2 is required for the granzyme proteins. As stated previously, CTLs have cytoplasmic granules that contain the proteins perforin and granzymes. A dozen or more perforin molecules insert themselves into the plasma membrane of target cells forming a pore that enables granzymes to enter the cell. Once in the tumor cell, these enzymes are able to breakup (lyse) the cell and destroy it. This is the beginning of the end for the cancer cells. The tumors begin to shrink and the rest is history,



On the other hand, prolong therapy with Il-2 can result in causing apoptotic death of the tumor- specific CD8+ T-cells.23

Clearly in a clinical setting, timing, dose, and exposure to these drugs play a major roll in the immunotherapy, and can have dramatic effects on the outcome.

All it takes is that one magic bullet to start the immune reaction..

https://app.box.com/shared/kjgr6dkztj

Melanoma And The Magic Bullet (Monoclonal Antibodies)

Public Service Announcement

A call for Melanoma Patients by Dr. Steven A Rosenberg

"We continue to see a high rate of clinical responses in our cell transfer immunotherapy treatments for patients with metastatic melanoma", Dr. Rosenberg said.

"We are actively seeking patients for these trials and any note of that on a patient-directed web site would be appreciated."

If you would like to apply for his trials, here is the website and information.

Dr. Rosenberg's information


Dr. Rosenberg's Clinical Trials


For the Warriors




The Melanoma Research Alliance has partnered with Bruce Springsteen, the E Street Band, and the Federici family to alleviate suffering and death from melanoma. Please view Bruce Springsteen’s public service announcement inspired by Danny Federici. Danny was the E Street Band’s organist and keyboard player. He died on April 17, 2008 at Memorial Sloan-Kettering Cancer Center in New York City after a three year battle with melanoma.


http://www.melanomaresearchalliance.org/news/PSA/

Source Fastcures blog



Join the Relay for Life!!!

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Dear Family and Friends,

I’ve decided to take a stand and fight back against cancer by participating in the American Cancer Society Relay For Life® event right here in my community! Please support me in this important cause by making a secure, tax-deductible donation online using the link below.

To donate on line now, click here to visit my personal page.
Jimmy B AKA Melanoma_Missionary

Relay For Life® is a life-changing event that brings together more than 3.5 million people worldwide to:

CELEBRATE the lives of those who have battled cancer. The strength of survivors inspires others to continue to fight.

REMEMBER loved ones lost to the disease. At Relay, people who have walked alongside people battling cancer can grieve and find healing.

FIGHT BACK. We Relay because we have been touched by cancer and desperately want to put an end to the disease.

Whatever you can give will help - it all adds up! I greatly appreciate your support and will keep you posted on my progress.

Keep the Fire Burning!!!

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Sincerely,

Jimmy Breitfeller
Turn off Music before you "Click to Play"
Signs of Melanoma Carcinoma Skin Cancer

How Skin Cancer Develops by "About.com : Dermatology"

Call for Patients with Unresectable Liver Metastases Due to Melanoma



Delcath Systems Granted Orphan-Drug Designations for Cutaneous and Ocular Melanoma


Delcath is actively enrolling patients in a Phase III clinical trial testing its proprietary drug delivery system, known as Percutaneous Hepatic Perfusion (“PHP”), with melphalan for the treatment of ocular and cutaneous melanoma metastatic to the liver.

This NCI-led trial is enrolling patients at leading cancer centers throughout the United States. Commenting on these orphan-drug designations, Richard L. Taney, President and CEO of Delcath, stated, “These favorable designations are important steps in our efforts to secure Delcath’s commercial position upon conclusion of our pivotal Phase III trial for metastatic melanoma. We remain steadfast in our commitment to become the leader in the regional treatment of liver cancers and we continue to enroll patients in this study, and advance our technology and the promise that it offers to patients with these deadly forms of melanoma and other cancers of the liver, all with limited treatment options.”

Orphan drug designation, when granted by the FDA’s Office of Orphan Products Development, allows for up to seven years of market exclusivity upon FDA approval, as well as clinical study incentives, study design assistance, waivers of certain FDA user fees, and potential tax credits.


Current Trial Centers


Phase I Study of Hepatic Arterial Melphalan Infusion and Hepatic Venous Hemofiltration Using
Percutaneously Placed Catheters in Patients With Unresectable Hepatic Malignancies



James F. Pingpank, Jr., MD, FACS
Associate Professor of Surgery
Division of Surgical Oncology
Suite 406, UPMC Cancer Pavillion
5150 Centre Avenue
Pittsburgh, PA 15232
412-692-2852 (Office)
412-692-2520 (Fax)
PingpankJF@UPMC.edu


Blog Archive

Call For Melanoma Patients!!!!

Call For Melanoma Patients!!!!

Dr. Rosenberg Has a New Clinical Trial.

Our latest treatment has a 72% objective response rate with 36% complete responses.

We are currently recruiting patients for our latest trial.

Is there some way to post this “Call for Patients” on the web site?

Steve Rosenberg

Dr. Rosenberg's Clinical Trials



(For a copy of the research paper.. see My Shared files)

The news headlines shown above for Melanoma / Skin Cancer are provided courtesy of Medical News Today.