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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
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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
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al. Nature Genetics 2020, Costea et al. and Schoeberl et al., Mol Cell 2023, Mol Cell 2025). For a list of ongoing projects and publications, please visit: https://www.kcl.ac.uk/research/pavri-group
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Research Associate. Our lab specializes in precision cardiovascular medicine, leveraging cutting-edge approaches such as human iPSC-derived 2D cardiovascular cells, 3D vascularized cardioids, CRISPR gene
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responsibilities Coordinating cord blood/sample logistics, ordering, and lab safety (BSL-2) Establishing and maintaining ABMO and ATO organoid cultures from CD34+ hematopoietic stem cells Performing CRISPR genome
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related fields, with a strong publication record. Prior experience in flow-cell electrochemistry, in-situ spectroscopy (UV-Vis, Raman, FTIR), or 3D printing and polymer processing is desired. Good spoken
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combinations and newly developed (nano)hormone-chemotherapeutics; conducting cell culture experiments and in vitro studies to assess biological activity, cytotoxicity and tumour cell responses
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with cell culture experiments and preparation of biological material for further studies; participating in in vitro studies evaluating the biological activity and cytotoxicity of selected compounds, drug
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modalities in the rodent brain (3D light-sheet microscopy, spatial transcriptomics and MRI of the same brain) to learn MRI contrasts that can depict neuronal and glial cell density and morphology. You will
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factor: Experience in the experimental development of cellular biomimetic environments, namely in the breast cancer context, with non-neoplastic and neoplastic cells, in 2D and 3D culture (spheroids and/or