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of this research program—spanning basic mechanistic discoveries, application of high-throughput technologies, validation in cancer-relevant mouse models, and translation platforms—is to understand the fundamental
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signaling and contributions from the tumor microenvironment, to improve therapy and survival outcomes in lung cancer patients. What You’ll Do: Conduct and design independent research projects Perform CRISPR
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resistance mechanisms underlying disease development, genetic and epigenetic biomarkers for lung cancer precision medicine, and signal transduction changes during disease progression. A strong background in
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About Us King’s College London is one of the world’s leading universities whose School of Cancer & Pharmaceutical Sciences unites basic, translational and clinical expertise to accelerate progress
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Background. The tumor microenvironment (TME) is a highly heterogeneous and dynamic ecosystem that significantly influences cancer progression, metastasis, and therapeutic response. Traditional bulk
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Overview Fred Hutchinson Cancer Center is an independent, nonprofit organization providing adult cancer treatment and groundbreaking research focused on cancer and infectious diseases. Based in Seattle, Fred
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-damaging agents (including radiation) and targeted therapeutics, and to understand how altered signaling can be exploited to increase the efficacy of cancer therapies. Among the key duties for this position
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. Preferred Qualifications: Strong background in ultrasound imaging Experience in photoacoustic imaging Strong hands-on skills in medical device development or strong computational skills including signal
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applicants interested in developing a research program in the field of cancer biology are welcomed to apply. Expertise in the fields of molecular biology, cell biology, and genetics are expected. Experienced
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About Us King’s College London is one of the world’s leading universities whose School of Cancer & Pharmaceutical Sciences unites basic, translational and clinical expertise to accelerate progress