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Jan 15, 2009 (Vol. 29, No. 2)

Exploiting the Value of Cancer Biomarkers

Expeditious Use Could Make Medicine More Personalized, Predictive, Preemptive, and Effective

  • Click Image To Enlarge +
    AVEO Pharmaceuticals' Human Response Platform is based on the company's genetically defined mouse models of human cancer, in which each model is engineered to contain signature genetic mutations that are present in human disease.

    According to the Biomarkers Consortium at the Foundation for the NIH, “biomarkers are molecular, biological, or physical characteristics that indicate a specific, underlying physiologic state to identify risk for disease, to make a diagnosis, and to guide treatment.” 
    Thus, biomarkers are essential to personalized medicine. A number of researchers will be discussing their progress using biomarkers at CHI’s upcoming “TriMedicine Conference” to be held in San Francisco in late February. A preview of some of those presentations is provided in this article.

  • Lung Cancer

    James L. Mulshine, M.D., professor at the Rush University Medical Center in Chicago, will be describing his use of quantitative imaging as a biomarker of drug response in lung cancer

    Lung cancer is still the world’s leading cause of cancer death; however, drug development is slow and expensive. The primary barrier is the outdated and imprecise method of evaluating drug response. Dr. Mulshine advocates using 3-D tumor imaging as a “surrogate endpoint” of measuring drug responsiveness rather than the unidimensional measurements currently used, much the way cholesterol levels rather than the frequency of heart attacks are now used to evaluate the efficacy of lipid-lowering drugs. 

    Spiral, or helical, CT scanning is a quick way to measure changes in tumor volume with high resolution. It can, therefore, be applied to “window-of-opportunity” drug trials, in which tumors are imaged both before and after drug exposure. Changes in tumor volume and signaling pathways precipitated by the drug treatment can be measured.

    Tumor reduction assessed by high-resolution CT was recently used successfully as an endpoint in a Phase II trial of pazopanib, an oral angiogenesis inhibitor targeting VEGFR, PDGFR, and c-kit in patients with stage I–II non-small-cell lung cancer.



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