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stem cell derived neurons (iNeurons). We are looking for an enthusiastic individual who is likely to thrive in a laboratory with a friendly and supportive atmosphere. The successful candidate should
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. To address these questions, the student will use isogenic SARM1 knock-in human induced pluripotent stem cells (iPSCs) with GoF mutations (E340K, del275-276 and A275V), SARM1 knockout and a homozygous intronic
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Biology and Stem Cell Biology in the laboratory of Dr. Lu Le , Professor and Chair of the Department of Dermatology. Dr. Le's lab lab investigates how genetic and microenvironmental factors interplay
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). We use a combination of developmental biology models including Xenopus (frog), mouse, and pluripotent stem cells, gene editing, and microscopy techniques to investigate the disease genetics and
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University of California, San Francisco | San Francisco, California | United States | about 9 hours ago
of cancer, neurodegenerative diseases, aging and stem cells. Pride Values UCSF is a diverse community made of people with many skills and talents. We seek candidates whose work experience or community service
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) stem cell aging. We particularly solicit applications from recent college graduates with plans to enter medical or graduate school upon expanding their (bio)medical research experience. We offer a
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Preferred: Bachelor's degree or a combination of equivalent experience, education or training in a related field Prior experience coordinating clinical trials or research studies involving stem cell therapies
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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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of Medicine 1160 W. Michigan St, Room GK305U Indianapolis, IN, 46202 317-278-4529 tpsharma@iu.edu Additional Qualifications PREFERRED QUALIFICATIONS: Candidates with molecular biology, stem cell biology, ex
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individuals in UK. As part of a wider strategy to develop a deep human experimental medicines platform, this project aims to mainly focus on using novel human in vitro platforms using IBD gut stem cells