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Merck Serono Initiates Phase III Study Of Stimuvax In Breast Cancer
Merck Serono, a division of Merck KGaA, Darmstadt, Germany, announced the initiation of its global Phase III clinical study of the therapeutic cancer vaccine Stimuvax® (BLP25 liposome vaccine, L-BLP25) in patients with advanced, inoperable breast cancer. The STRIDEa study will determine if Stimuvax can extend progression-free survival in patients treated with hormonal therapy who have hormone receptor-positive, locally advanced, recurrent or metastatic breast cancer. Overall survival, quality of life, tumor response and safety will also be assessed in this study. The STRIDE study will be supervised by an expert Steering Committee and is sponsored by Merck Serono, which is leading the development of Stimuvax.
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When Summer Vacation Is Far From A Vacation
The kids are playing in the backyard and enjoying their break from school. Your husband is enjoying the day on the golf course. And you"re cleaning up the house, folding laundry and cooking three meals. Sound familiar?
News of the day
Link Between Pancreatic Cancer And Dietary Fat
High intake of dietary fats from red meat and dairy products was associated with an increased risk of pancreatic cancer, according to a new study published online June 26 in the Journal of the National Cancer Institute.
Oncology

Advance Toward New Drugs That Turn Genes On And Off

Scientists in Michigan and California are reporting an advance toward development of a new generation of drugs that treat disease by orchestrating how genes in the body produce proteins involved in arthritis, cancer and a range of other disorders. Acting like an "on-off switch," the medications might ratchet up the production of proteins in genes working at abnormally low levels or shut off genes producing an abnormal protein linked to disease. Their report is in the current issue of ACS Chemical Biology, a monthly journal. In the study, Anna K. Mapp and colleagues discusses molecules that cause genes to be active and churn out proteins - so-called transcriptional activators. That"s because they control a key process known as transcription, in which instructions coded in genes produce proteins. Malfunctions in these activators could lead to altered transcription patterns that lead to disease. For example, variations in the tumor suppressor gene p53 are found in more than half of all human cancers. Mapp describes discovery of a group of molecules that could be used to help scientists better understand transcription. Known as activator artificial transcriptional activation domains, these small molecules mimic natural activators and could provide insights on how mistakes in gene regulation result in various diseases. "Evidence suggests that these small molecules mimic the function and mechanism of their natural counterparts and present a framework for the broader development of small molecule transcriptional switches," Mapp states. American Chemical Society


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