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Hematopoietic stem cells (HSCs) ensure the lifelong production of all blood cell types. With age, HSCs undergo functional and molecular changes that impair their regenerative capacity and contribute
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cells. Proteomic approaches have identified several surface proteins that are overexpressed in glioblastoma stem cells compared with non-tumour cells, and whose role in glioblastoma biology remains to be
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Fully Funded PhD Position: Decoding Chromosome 1 Risk in AMD Using Stem Cell–Derived Retinal Models Host: Newcastle University (UNEW), UK Consortium: MSCA Innovative Training Network Pandora Start date
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microphysiological systems (MPS), are rapidly emerging as transformative and strategic technologies with the potential to redefine the future of health and life sciences. By integrating stem cell biology, patient
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basis for the potential testing of future therapeutic strategies. We are seeking a highly motivated and intellectually curious PhD student, ideally with strong background in cell culture and biochemistry
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the vascular organoid model, to establish a causal link between these target genes and the vascular calcification phenotype. This PhD project, at the interface of vascular biology, immunology, stem cell biology
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alterations impact human lymphocyte development. By combining CRISPR-based genome engineering, induced pluripotent stem cells (iPSCs), and advanced thymus and bone marrow organoid systems, we study both
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CoE (https://www.med.uio.no/hth/english/ ) is inviting applications for a three‑year PhD position. The recruited candidate will take part in UiO Emerging Technologies Initiative Project FTI-NAM. NAM
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on their potential, growth mindset, and passion for discovery. Where to apply Website https://www.academictransfer.com/en/jobs/363076/phd-candidate-in-stem-cell-mode… Requirements Specific Requirements
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to developing methods for iPSC culture, 3D cell models, and stem cell differentiation within the field of complex tissue regeneration. In this PhD project, you will work at the interface of stem cell biology