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of hematopoietic stem cells. We are particularly interested in studying the processes and cellular signaling that lead to the emergence, maturation and expansion of stem cells in murine embryonic development and in
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engineering, employing advanced tissue culture and human stem cell biology, tissue engineering, single-cell genomic profiling, and molecular biology techniques. Responsibilities will include designing and
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advanced tissue culture and human stem cell biology, tissue engineering, single-cell genomic profiling, and molecular biology techniques. Responsibilities will include designing and performing experiments
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(or equivalent) in biological sciences. Strong research background in cell biology, molecular biology, mouse models of cancer, and/or biochemistry. Prior experience in stem cells, vascular biology, 3D organoid
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we identified distinct transcription factors that govern cranial versus somite derived myogenesis potentially driving the enhanced proliferative capacity of adult cranial-derived stem cells in vitro
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-research/ ) You have a strong interest in (3D) stem cell culture, microscopy, biosensors, genetics and molecular biology. Prior experience with (iPSC) tissue culture, FLIM microscopy and organoids is a
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inducible pluripotent stem cells (iPSC) cells from patients (healthy and those suffering from opioid dependency) as a platform to investigate the function of opioid receptors, the molecular movements and
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inducible pluripotent stem cells (iPSC) cells from patients (healthy and those of patients with cardiovascular diseases) as a platform to investigate the function of different G protein-coupled receptors