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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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with no cure, and we urgently need new ways to understand and treat it. This exciting PhD project combines cutting-edge stem cell technology, 3D bioprinting, brain cell models, and advanced genomic
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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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. You will use human in vitro models, including astrocytes and brain organoids generated from induced pluripotent stem cells (iPSCs) of people with MLC and healthy controls. You will investigate disease
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neurodevelopmental disorders? This project will use human stem cells to grow early brain cells, then rapidly switch off selected disease-linked transcription factors. By measuring the immediate effects on chromatin
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potential in vivo. The project requires a strong foundation in neuroscience and an interest in both stem cell-based and animal research. Prior experience with cell culture techniques, behavioural and
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the future of health and life sciences. By integrating stem cell biology, patient-derived material, tissue engineering, microfluidics, advanced analytics, and digital technologies, NAM platforms enable
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are united in our efforts to understand, explain and improve our world and the human condition. Description of the workplace The Chromatin & Genome Integrity Lab (Stem Cell Center & Department of Experimental
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sciences. By integrating stem cell biology, patient-derived material, tissue engineering, microfluidics, advanced analytics, and digital technologies, NAM platforms enable the development of highly