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models using induced pluripotent stem cell (iPSC)-derived kidney organoids. A key aspect of this work will involve integrating bioprinting and organ-on-chip technologies to create mature and
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related to these general topics. Each focuses on gene regulation â“ and changes that occur in gene regulation â“ during stem cell development and differentiation. We use mice to model pediatric malignancies
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We are seeking an enthusiastic and highly motivated Postdoctoral Research Associate to join the Birket Lab, an ambitious team pioneering research in human pluripotent stem cell (hPSC) biology to
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studying circuit disassembly, plasticity, and reassembly in non-human primate and human glaucoma tissue, and the integration of stem cell-derived retinal ganglion cells into diseased retina. Highly motivated
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topics. Each focuses on gene regulation – and changes that occur in gene regulation – during stem cell development and differentiation. We use mice to model pediatric malignancies. The overall goal of our
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/degradation and dental pulp stem cell responses during caries progression. Current research includes experiments assessing gene and protein expression changes in cells and biological tissues. Responsibilities
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of novel therapeutics (e.g. stem cell-based, RNA therapeutics) to accelerate cardiac regeneration and treat heart failure. Chronic heart failure remains an unmet clinical need. As the heart is the least
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Resources at askrecruitment@uams.edu . Department: ICE | NRSL Stem Cell Transplant F7 IP C Department's Website: Summary of Job Duties: This posting will be used to fill multiple positions. Full time/part
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Employer https://main.hercjobs.org/jobs/21874351/clinical-assistant-hematopoietic-stem-cell-transplant Return to Search Results
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Skills/Qualifications Experience in: 1) Mammalian or human stem cell culture techniques; 2) cell culture in bioreactor; 3) analytics for characterization of cells (flow cytometry, immunofluorescence