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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | 2 days ago
-disciplinary research center with various current translational studies. Our laboratory is interested in understanding the molecular mechanisms of HIV latency and persistent HIV infection-associated
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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | about 4 hours ago
-disciplinary research center with various current translational studies. Our laboratory is interested in understanding the molecular mechanisms of HIV latency and persistent HIV infection-associated
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this condition. You will evaluate their interactions by building in silico models to establish the relationship between mechanical loading, cell imaging, in vivo micro-CT, and spatial transcriptomics, identifying
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to design optimized growth media for animal cells lines used in biotechnology. This work involves the development and application of genome-scale metabolic models to characterize cellular growth and
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models such as patient derived tumour organoids and human biospecimens. Undertaking laboratory research investigating the mechanisms of cell senescence and its pathogenic role and therapeutic targeting in
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vivo experimental models (e.g. ticks and mice) to identify and characterize bacterial virulence factors and host cell machinery; molecular, cellular, and immunological mechanisms that facilitate
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Miescher Institute for Biomedical Research (FMI) studies how metabolic inputs dynamically regulate epithelial remodelling and cell fate decisions in skin. The Translational Research team of Dr. Lukas Roth
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investigates mechanisms underlying maternal and child outcomes after assisted reproductive technologies, with a particular focus on corpus luteum–derived endocrine signals in decidualization and endothelial
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on the mechanisms and therapeutic targets of inherited retinal degenerations (IRDs). The successful candidate will lead interdisciplinary projects integrating single-cell transcriptomics, proteomics, retinal biology
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models, flow cytometry, confocal microscopy and unbiased approaches such as single cells transcriptomics, spatial transcriptomics and epigenetics to characterize molecular and cellular mechanisms. Using