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applications. c) Experience in cell and tissue culture, and in particular in the field of stem cell culture such as induced pluripotent stem cells (iPSCs). 5. Formalization of the applications: Applications
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and food security, and bioscience for health which includes research on animals, genetic modification and stem cell research. Whilst you may not have direct involvement in this type of research, you
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Center for Advancement of Blood Cancer Therapies (CABCT) (https://icahn.mssm.edu/research/cabct ). The successful candidate will work on projects involving human induced pluripotent stem cells (iPSCs) and
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. Proficiency in spoken and written English Demonstrated expertise in one or more of the following areas: genome integrity, stem cell culture, quantitative and live-cell microscopy, or bioinformatics We offer Two
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well as at the Faculty of Health and Medical Sciences: https://healthsciences.ku.dk/research/corefacilities/. Driving Discoveries towards Stem Cell-Based Therapies and Regenerative Medicine reNEW is committed
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University of California, San Francisco | San Francisco, California | United States | about 1 month ago
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 has prepared them to contribute to our
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for utilizing human induced pluripotent stem cell-derived models and animal models to study molecular mechanisms of arrhythmias, the effects of current treatments and identify new therapeutic targets. This person
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: Hematopoietic Stem Cell/Bone Marrow Transplantation, Solid Organ Transplantation and Histocompatibility Testing and obtain/maintain their California Clinical Histocompatibility Scientist or Director's license
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expertise in macrophage/stroma interactions. Applicants must hold a PhD (or be close to completion: thesis submitted at the time of application) in immunology, stem cell biology, or stromal cell biology
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organoid for the treatment of traumatic injuries and neurodegenerative disorders of the spinal cord. The approach integrates autologous induced pluripotent stem cells (iPSCs) and nanoelectronics to restore