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/rat models. The individual will be responsible for planning and executing experiments independently. The individual must be skilled in biochemical, molecular biology, cell biology and
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will use genetic perturbation and overexpression in vitro and in vivo (mouse) models to uncover principles that inform tissue repair, oral health, and host–microbe interactions. This position offers
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, the lab aspires to remain at the cutting edge in terms of cellular and molecular biology techniques and to advance the neurodegeneration field by developing innovative tools and technologies that we will
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differentiation and the immune response, with mechanistic explorations to unveil new therapeutic strategies. Works with primary T cells in vitro and mouse models in vivo, effectively. Demonstrates expertise in flow
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: (1) epigenetic analysis in a mouse models of Parkinson’s disease related exposures, (2) elucidating molecular mechanisms of pesticide-induced changes in DNA methylation in a 3D neurosphere model in
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are the following: Works with primary isolated cells, cell/tissue culture, and transgenic mouse models of cardiovascular disease; conducting immunofluorescence microscopy, western blotting, and other molecular
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that directly impact patients’ lives. By advancing proof-of-concept studies from cellular and animal models through human trials, RITMS ensures that promising discoveries are rapidly translated into clinical
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tuberculosis using in vitro and in vivo mouse models. Performs experiments that include genetic, biochemical, cellular and molecular approaches, as well as metabolomics, epigenetics and high throughput
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to the investigation of protein design and protein language models using advanced computational approaches. This position will also be responsible for lab management, supporting day-to-day activities and participating
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’ lives. By advancing proof-of-concept studies from cellular and animal models through human trials,RITMSensures that promising discoveries are rapidly translated into clinical applications that improve