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of patient-derived xenograft (PDX) models. Molecular and cellular biology approaches, including cloning, plasmid preparation, gene editing, and functional characterization of cellular phenotypes. Execution
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cellular biology approaches. The Park Lab develops human stem cell-based neural models to investigate molecular and cellular mechanisms regulating neurodevelopment and neural function, and to understand how
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-based perturbations, base/prime editing, and targeted epigenetic modulation). Functional genomics in neuronal systems, including transcriptomic and epigenomic profiling. Model systems such as human iPSC
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projects focusing on hPSC differentiation, and modeling neurodegenerative diseases. ● Standardize and optimize advanced molecular and imaging assays ● Analyze complex multi-omic or functional datasets
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A postdoctoral position is immediately available in the laboratory of Carson Thoreen in the Department of Cellular and Molecular Physiology at Yale School of Medicine. We are looking
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laboratory (http://www.garglab.org ) uses approaches from genomics, molecular biology, systems biology, and data science to understand cellular heterogeneity. We want to understand how cell systems with
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aneurysms, cavernous malformations, and arteriovenous malformations, using patient cohorts and surgical specimens together with cellular and in vivo models. The successful candidate will study the molecular
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utilization as a druggable pathway in fungal pathogens and the development of antifungal potentiators. Projects will involve a combination of fungal genetics, molecular biology, chemical biology, metabolism
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cell immunology, mucosal immunology, and cancer immunology using animal models and single-cell multiomics/spatial transcriptomics approaches. This postdoctoral researcher will combine wet-lab molecular
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established internationally recognized experimental platforms for the study of intraerythrocytic parasites, parasite metabolism, chemical biology, and preclinical models for therapeutic discovery and