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and EMBL Heidelberg). The work of our research group (http://lab.mueller-tidow.de ) focuses on stem cells and therapy resistance. We aim to understand how epigenetic dysregulation participates in
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applications. You will utilize ORNL's new capabilities of aberration-corrected scanning transmission electron microscopy (STEM). A particular focus of the research will be understanding heterogeneities, such as
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regionalization and lamination of the human cortex and their deregulation in disease using different in vitro models derived from human pluripotent stem cells. The successful candidate will be in charge of
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-derived tumour stem cells and matched iPSC-derived neural stem cells to develop new approaches for personalised prediction of drug responses in glioblastoma, a currently untreatable malignant tumour
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technician is required to provide laboratory support for the Tucker lab and contribute to a project that aims to understand the role of the junctional epithelium (JE) and its stem cell niche. The technician
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The University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | 8 days ago
to enable the ability to identify and interpret sound information received by the ears. Regarding our gene therapy approaches, we seek to develop novel viral vector technology to create novel therapeutic
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populations in STEM or computing education Location Remote, United States Additional Information This is a Part-Time per diem position classified as Non-Exempt. The offered pay is based on the successful
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Oncology Stem Cell Tranplantation and Regenerative Medicine Postdoc Appointment Term: 1-year term (Renewal is based on performance -- Max of a 5 years) Appointment Start Date: As Soon As Possible Group
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to identify metabolic alterations that drive tumor initiation and progression. This work has recently expanded to examine how metabolism and autophagy influence the biology of embryonic and cancer stem cells
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manuscripts and research grants. The overall focus of this post-doctoral research position is the development of self-renewable induced pluripotent stem cell-based therapies for the prevention and management