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biology. The project aims to uncover how mechanical properties, forces, and physical phenotypes integrate with molecular networks to regulate the function of complex cellular systems across multiple
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include identifying relevant molecular targets, linking cellular mechanisms and defects to disease phenotypes, and small molecule screening to identify therapeutics. Understanding vascular mural cell
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development of blood and prostate cancers. Our research bridges basic, translational, and clinical studies to uncover mechanisms linking inflammation, DNA damage, and stem cell aging to cancer initiation and
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Postdoctoral Researchers to study the molecular mechanisms linking DNA replication, chromatin dynamics, and genome stability in cancer. Scientific Background DNA replication is essential for cellular
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development of blood malignancies and other solid cancers. Our research bridges basic, translational, and clinical studies to uncover mechanisms linking inflammation, DNA damage, and stem cell aging to cancer
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cell-derived muscle models or 3D culture systems (including physiological hypoxia) is a plus. Experience in biochemical and immunological mechanisms of immune-suppression Position Type Research
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through migration and morphogens release in long range-patterning of cortical regions. However, their developmental origins and the molecular mechanisms underlying CR function in humans remain poorly
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investigate HIV-induced vascular dysfunction and neuroAIDS molecular mechanisms using in vitro and in vivo (animal models) approaches. Specifically, the person will utilize HIV mouse models and HIV-1 infected
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and molecular mechanisms underlying phenotypic variability in quiescent cell populations and their impact on adaptation, antifungal resistance, and population dynamics. The successful candidate will
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multidisciplinary clinical and translational research team focused on advanced multi-omics-based trials in colorectal cancer. The successful candidate will support the analyses of single-cell and spatial