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the Lund Stem Cell Center . The division has a strong research focus on hematopoiesis in mice and humans, both during development and in adulthood, with the aim of translating research findings into clinical
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and manipulate the cellular signaling pathways that govern stem cell identity, tissue development, and aging. Purpose of the research project(s) this position supports: To develop transformative, AI
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University of North Carolina at Charlotte | Charlotte, North Carolina | United States | about 1 month ago
collaborative research team. Experience in cell culture is required. Candidates with experience in stem cell culture, including the derivation and maintenance of induced pluripotent stem cells (iPSCs
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CRISPRi/a screening (Cell Stem Cell 2024), 3) Deciphering pathogenic coding and non-coding variants linked to congenital heart disease in a cell type-specific manner (Cell 2022), and 4) Combining iPSC
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Responsibilities Participate in research program of PID modelling using stem cell platforms conducted in the Division of Rheumatology & Clinical Immunology. Supervise junior research staff and postgraduate students
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the future of health and life sciences. By integrating stem cell biology, patient-derived material, tissue engineering, microfluidics, advanced analytics, and digital technologies, NAM platforms enable
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of stem cell-based therapies for Hirschsprung disease. About you You will hold a PhD degree in experimental biology, anatomy, physiology, neuroscience, or a relevant subject area and have evidence of first
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. mammalian cell culture, sterile technique, transfection, microscopy) (Preferred) Direct research experience involving molecular biology, synthetic biology, developmental biology, stem cell biology, genome
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tools and technologies that we will share with the research community. To achieve those goals, we are currently using mammalian cell lines (including stable cell lines) and induced pluripotent stem cells
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Developmental & Stem Cell Biology, are developing a common theoretical framework for addressing these questions. Beyond the system-specific molecular and cellular mechanisms, we aim to identify dynamical