20 solid-mechanics "ML4Q Matter and Light for Quantum Computing" Fellowship positions at Nature Careers
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study the cell cycle machinery and how it influences cancer biology in both cancer cells and stromal cells and leverage our discoveries to design new drug therapies for cancer. We have developed several
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regulation mechanism of cancer biology/immunology in solid tumors, neural stem cells and cancer stem cells of brain tumor. The Chen lab has great expertise in combining computational with high-throughput
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for postdoctoral fellows who would like to engineer next-generation T cell therapies for solid tumors. Adoptive cell therapies have revolutionized the treatment of aggressive hematological malignancies. However
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Postdoctoral Position in Molecular Mechanisms Regulating Placenta Development NIH-funded postdoctoral position is available to investigate molecular mechanisms controlling hemochorial placentation
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The Dubal Laboratory of Neuroscience and Aging at the University of California, San Francisco (UCSF) seeks postdoctoral fellows to investigate the longevity factor klotho and mechanisms of cognitive
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. Markowitz. Develop biomarkers for immune-based therapy. Study resistance mechanisms to immune checkpoint blockade. Outstanding mentorship from Dr. Markowitz and expert faculty with wide-ranging funded
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background in biochemistry and molecular biology. Experience with mouse tumor xenograft models or genetically modified mouse models. Experience in analysis of novel drug activity and mechanisms. Competent in
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be in the process of either completing their PhDs and/or have received their PhD after May 1, 2023. Fellows must have completed their doctoral degree prior to starting their Fellowship term. Edwin Land
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of drug resistance, metastasis, and drug discovery in breast and kidney cancers in the laboratory of Dr. Sahin. The major research theme of the Sahin lab is to identify the mechanisms of drug resistance
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scientific fields and a multitude of educations ranked highly in international comparison. Recent breakthroughs at Umeå University include deciphering the molecular mechanisms of the bacterial CRISPR-Cas9