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through cutting-edge research. Join Dr. Marcel van den Brink’s multidisciplinary team to explore innovative ways to decipher the molecular mechanisms by which the microbiome contributes to the biology of
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/surgeons to plan, design, and execute computational analyses. Advance the integration of multi-omics and clinical datasets to uncover mechanisms of tumor evolution, therapeutic resistance, and potential
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the biological mechanisms linking cardiovascular diseases with cancer and cancer therapies. She uses human-induced pluripotent stem cells (iPSCs), patient-derived samples, genomics, and computational biology to
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of medicine through cutting-edge research. Leveraging multiomics, mouse genetics, hiPS cells, and electrophysiology, our lab works on molecular mechanism of cardiometabolic oncology. The postdoctoral fellow
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, shaping the future of medicine through cutting-edge research. We seek a motivated and talented Postdoctoral Fellow to join Dr. Andrei Rodin’s laboratory in the Department of Computational and Quantitative
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laboratory focuses on developing physics-based computational methods to study protein structure, dynamics, and drug design. For more information about Dr. Vaidehi’s lab, please visit here. As a successful
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top journals such as Journal of Hematology & Oncology (2024), Cancer Research (2024), Cell (2023), Cell Stem Cell (2023 ×2), and Nature Cell Biology (2022). The Su research program is currently
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drug development, with strong potential for publication in high-impact journals. Our research aims to uncover fundamental mechanisms of leukemogenesis and solid tumor progression, with a particular
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Postdoctoral Fellow interested in studying the molecular, cellular, and metabolic mechanisms leading to obesity, diabetes, and cancer. The Wang laboratory investigates the function and remodeling of adipose
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Metabolism is the interface between cancer treatment and metabolic syndrome. Leveraging multiomics, mouse genetics, hiPS cells, and electrophysiology, the lab works on molecular mechanism of cardiometabolic