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of ageing. This is a molecular and cellular research project that is expected to generate new insights into brain metabolism, how glial cells and neurons communicate, and how these processes break down in
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how the adaptive immune system recognises and responds to foreign and self-antigens. The successful candidate will employ a broad suite of immunological and molecular tools—such as flow cytometry, cell
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, using electrophysiology and calcium imaging as core tools, supported by molecular biology, cell culture, and in vivo experiments. The successful candidate will lead mechanistic, function-first research
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, using electrophysiology and calcium imaging as core tools, supported by molecular biology, cell culture, and in vivo experiments. The successful candidate will lead mechanistic, function-first research
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major interdisciplinary research program focused on establishing Vibrio natriegens—the fastest-growing bacterium known—as a next-generation microbial cell factory for sustainable biomanufacturing
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. This position builds directly on the substantial computational foundation generated through our TenK10K initiative, the world’s largest single-cell multi-omics resource. With single-cell multi-omic profiles from
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cells within the prostate tissue are most susceptible to toxic heavy metals, their impact on cancer growth and associated aggressive disease and health disparities. Ultimately, the successful candidate
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population scale. As the world’s largest single-cell multi-omics resource (with single-cell multi-omic data generated for 10,000 donors, matched genotypes, and clinical phenotyping), TenK10K provides
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, molecular biology, bioengineering, pharmacology, or a closely related discipline strong hands‑on wet‑lab experience, including molecular biology, cloning, and cell‑based assays demonstrated experience leading
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, molecular biology, bioengineering, pharmacology, or a closely related discipline strong hands‑on wet‑lab experience, including molecular biology, cloning, and cell‑based assays demonstrated experience leading