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AML. We integrate multi-omics profiling of patient primary samples with iPSC, organoid, and mouse models to define disease mechanisms and identify therapeutic vulnerabilities. Lab website: https
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, which has seen little improvement in patient survival over the past decades. Utilizing genetically engineered mouse and human glioma models, our lab investigates how glioma cells interact with the tumor
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models, analyzing and interpreting experimental data, preparing manuscripts and grant applications, and mentoring trainees within the laboratory. A major component of this position will involve mouse
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on heart failure, cardiac remodeling, and cardiometabolic disease and perform Small-Animal Cardiovascular Surgery. The primary responsibility of this position is the performance of mouse cardiovascular
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, which has seen little improvement in patient survival over the past decades. Utilizing genetically engineered mouse and human glioma models, our lab investigates how glioma cells interact with the tumor
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diseases. We use mouse models to address these questions. We combine a range of approaches, including genetics, molecular biology, biochemistry, confocal imaging, and behavioral analyses. See the lab website
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malignancy. The project integrates mouse and iPSC models, CRISPR genome editing, molecular biology, flow cytometry, and single-cell multi-omics to dissect disease mechanisms. We are committed to mentoring
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to include maintaining cell lines, glycerol stocks and mouse colonies. Individual will also conduct complex, multi-step laboratory procedures based on written protocols and oral instruction using molecular
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• Research background in pain, addiction, or related neuropsychiatric disorders • Experience with mass spectrometry or bioanalytical techniques • Experience with mouse surgical procedures or in vivo
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Website: https://fbri.vtc.vt.edu/research/labs/shin.html The successful candidate will play a central role in supporting research projects, managing the mouse colony, and serving as the “go-to” person for