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research group uses primary human cells and molecular biology techniques to study macrophage responses to Mycobacterium tuberculosis infection, and macrophage interactions with other immune cells after
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for the Future Additive manufacturing, or 3D printing, of rechargeable batteries can create new form-factor cells molded to the shape of the device at design stage without compromising energy density
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microenvironment and promoting DMG initiation and progression. The successful candidate will utilize cutting-edge techniques such as single-cell RNA sequencing, spatial proteomics, and microbiome manipulation
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signals that may regulate epithelial progenitor cell status, morphogenetic programming and function, and how these processes relate to pathophysiology in allergic diseases, for example the emerging chronic
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microscopy of radial glial cells, RNA sequencing on the developing cortex and CSF metabolomics to understand how microbial signals at the CSF could modulate RG at the ventricular interface. Experience in mouse
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utilize cutting-edge techniques such as single-cell RNA sequencing, spatial proteomics, and microbiome manipulation to uncover novel therapeutic targets. This position offers an opportunity to work at the
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our knowledge of developmental and environmental signals that may regulate epithelial progenitor cell status, morphogenetic programming and function, and how these processes relate to pathophysiology in
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of hydrogen as fuel. For this purpose, we will design and create a novel, freestanding, tandem, buried many-junction (BMJ) photoelectrochemical (PEC) cell to split water unassisted. As part of this multi
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desirable: design, formulation and characterization of nano drug delivery systems, biomaterials, oral drug delivery, biological barriers to nucleic acid delivery, cell culture and animal work. • Evidence of
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project to develop new instrumentation for trace gas and radical detection using an approach related to absorption spectroscopy using stable optical cavities or multi-pass cells. The new setup is to be