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Postdoctoral Fellows to join a dynamic, fully funded research program investigating how environmental exposures and inflammation drive hematopoietic stem cell dysfunction, clonal hematopoiesis, and the
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methodical, rigorous, reactive, and attentive, with a strong work ethic and high integrity. He/she will already have experience with human stem cells, neuronal differentiation, as well as 3D culture, organoids
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-in-3d-stem-cell-derived-human-organ-models/t11589 Where to apply Website https://www.ceitec.eu/protein-in-cell-nmr-spectroscopy-in-3d-stem-cell-derived-… Requirements LanguagesENGLISHLevelGood
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Ecole des Mines de Saint-Étienne | Gardanne, Provence Alpes Cote d Azur | France | about 20 hours ago
experience delayed or incomplete tissue repair, including poor bone healing.1 Current therapeutic strategies rely on controlling stem cell differentiation and macrophage polarization towards pro-/anti
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Stem Cell Transplant (SCT). This 12-month structured program begins with a 4 month "Boot Camp" focused on building foundational clinical knowledge and skills across Hem/Onc and SCT services in
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) years of experience working with mice, including some mouse surgical experience Experience with derivation of specific neuronal cell types from stem cells Modes of Work Positions that are eligible
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proteomic techniques as well as human stem cell models. The candidate must be comfortable with advanced molecular biology techniques and bioinformatics. We are seeking a self-directed, self-motivated, curious
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Group: https://www.cruk.manchester.ac.uk/research-group/stem-cell-biology/ Why choose Cancer Research UK Manchester Institute? The Cancer Research UK Manchester Institute (www.cruk.manchester.ac.uk), an
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Engineering at Harvard University seeks outstanding postdoctoral applicants with knowledge and expertise encompassing stem cell biology, synthetic biology and genetic engineering, and in vivo engraftment
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ranging between 15 and 30%. The necessity to find additional source of organs for transplantation has boosted research on the generation of organs from pluripotent stem cells (PSCs). We develop new