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highly organized and dynamic process of blood cell production, progressing hierarchically from hematopoietic stem cells (HSCs) through multipotent progenitors to fully differentiated cells of the myeloid
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University of California, Los Angeles | Los Angeles, California | United States | about 23 hours ago
the laboratory of Dr. Thomas Rando. Research at Dr. Rando’s laboratory intersects the biology of aging and stem cell biology. Our research focuses on molecular mechanisms that regulate stem cell function and
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-activated cell sorting (FACS), and immunoprecipitation (IP). Maintains and differentiates human induced pluripotent stem cells (iPSCs) into specific cell lineages using established protocols and assist with
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motivated and skilled cell biologist with experience in stem cell culture, neuronal differentiation, and phenotypic assays. A strong background in neurobiology, cell imaging, and molecular techniques, along
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nominations and applications is now open. We warmly invite exceptional fresh PhD graduates from institutions around the world to apply. To learn more about the Program, please visit https
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candidate with: A PhD degree in Life Science, preferable Cell Biology, Biomedicine, or Computational Biology Curious mind-set with a strong interest in fundamental Cell cycle, DNA replication and Genome
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semesters Beginning Winter semester Application deadline March/April, see: http://www.cim-imprs.de Tuition fees per semester in EUR None Combined Master's degree / PhD programme No Joint degree / double
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for this postdoctoral study focuses on two stages of processing. The first stage is retting, where the candidate will study the physicochemical properties (evolution of the primary and secondary cell walls of the stems
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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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Ecole des Mines de Saint-Étienne | Gardanne, Provence Alpes Cote d Azur | France | about 1 month 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