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pluripotent stem cells as model systems to interrogate the underlying pathobiology of pediatric rhabdomyosarcoma. The Hatley lab is a very collaborative, interactive environment focused on scientific and career
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(Elsevier, 2018; https://linkinghub.elsevier.com/retrieve/pii/S1937644817300825)vol. 335, pp. 41–84. The molecular basis of cell self-renewal and pluripotency in embryonic stem cells Supervisor: Laura
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/ . The Yachie lab (https://yachie-lab.org/ ) develops next-generation molecular technologies that integrate DNA event recording, genome engineering, organoid and stem-cell platforms, and high-throughput
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genetic disease modeling, delivery technologies, informatics, and clinical translation of gene therapies are available. Key Responsibilities: Performs a variety of molecular and cell biology experiments and
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of cancer, and/or biochemistry. Prior experience in stem cells, vascular biology, 3Dorganoid cultures or protein interactions is advantageous. Evidence of successful completion of a research project
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who share these goals. For more information about the department visit http://pathology.stanford.edu/ About the Lab: The Schuele lab works on gene discovery and novel stem cell technologies to generate
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advanced the understanding 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
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Department BSD PED - Hematology, Oncology, and Stem Cell Transplantation About the Department The Section of Pediatric Hematology/Oncology provides care for pediatric, adolescent, and young adult
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Anticancer Therapy Based on Modulation of the STING Pathway Hematopoietic stem and progenitor cell adaptations to stress Mapping Adrenal Autoimmunity: Mechanisms and Interventions in Addison’s disease
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mesenchymal stem cells using Cas9-mediated engineering. The edited cells will subsequently be differentiated into adipocytes to enable studies of protein localization, interaction partners, and function in