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DNA Marker Predicts Platinum Drug Response in Breast, Ovarian Cancer

Posted: March 23, 2012 at 3:17 am

Marker identifies tumors unable to repair DNA damage by platinum agents

Newswise BOSTONScientists from Brigham and Women's Hospital and Dana-Farber Cancer Institute and their colleagues have found a genetic marker that predicts which aggressive "triple negative" breast cancers and certain ovarian cancers will likely respond to platinum-based chemotherapies.

The marker, found on chromosomes within the cancer cells, could lead to a test for identifying patients whose cancers could be effectively treated by a single platinum-based drug, "and avoid the toxicities of other chemotherapy combinations," says Andrea Richardson, MD, PhD, co senior author of the study and a surgical pathologist at Brigham and Women's and Dana-Farber.

The report is being published in the April issue of Cancer Discovery, a journal of the American Association for Cancer Research.

Many cancer treatments work by damaging DNA within tumor cells, rendering the cells unable to grow and divide. While some cancer cells can readily repair broken DNA molecules, allowing them to survive drug or radiation therapy, others have lost this repair capacity, making them vulnerable to DNA-damaging agents.

The new marker, Richardson says, flags breast and ovarian cancer cells that can't repair the type of DNA damage caused by treatment with platinum drugs, including cisplatin and carboplatin. A clinical test for the marker could be particularly valuable in treating triple-negative breast cancers, which are resistant to anti-hormonal therapies or targeted drugs like Herceptin.

"We currently do not have any targeted therapies for patients with triple-negative breast cancer, so if these laboratory findings are confirmed and an assay is created to predict sensitivity to drugs that target defective DNA repair, it would be a major step forward," says Richardson, the primary pathologist for the study. However, she adds, such an assay isn't likely to be developed soon.

The new genetic marker was discovered when Richardson and others studied tumor tissue collected from triple negative breast cancer patients who participated in two clinical trials of platinum drug therapy. Triple-negative tumors develop in about 80 percent of women who carry mutated breast cancer genes BRCA1 and BRCA2. These tumors are characterized by a lack of estrogen, progesterone, and HER2 receptors, which makes them unresponsive to targeted treatments that block those receptors.

The two clinical trials, led by Judy Garber, MD, MPH, of Dana-Farber, were investigating whether platinum drugs would also be effective in so-called "sporadic" triple negative tumors -- those that develop in the absence of BRCA1 and BRCA2 genetic mutations. Overall, about 20 percent of breast cancers are triple negative. Some of these cancers respond to standard chemotherapy drugs, while others don't. The patients whose triple negative tumors do not go away after chemotherapy have a particularly poor prognosis.

A total of 79 patients in the two trials received cisplatin alone or in combination with bevacizumab (Avastin) to shrink their tumors prior to removing them surgically. In both trials, approximately 40 percent of patients had a complete or near-complete disappearance of the cancer after the cisplatin therapy.

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DNA Marker Predicts Platinum Drug Response in Breast, Ovarian Cancer

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