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pluripotent stem cell (iPSC)-derived MNs to investigate RNP granule dynamics in a physiological model. We generated FUS-eGFP reporter iPSCs for live-cell imaging of RNP granules, facilitating compound screening
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degeneration in ALS. To achieve this objective, our team uses induced pluripotent stem cell (iPSC)-derived MNs to investigate RNP granule dynamics in a physiological model. We generated FUS-eGFP reporter iPSCs
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an Associate Researcher to join a project aimed at identifying new target molecules (receptors) on leukemia stem cells, characterizing their function, and developing antibodies directed against these targets
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conditions of bone healing. The doctoral researcher will develop and apply models incorporating mechanical stimulation and cocultures of human bone forming stem cells and monocytes to capture both inflammatory
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theory and computational modelling) to apply their skills to the fascinating field of evolutionary processes across biological scales. COSMA LAB Stem Cells | Chromatin | Super Resolution Imaging | Genome
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inducible pluripotent stem cells (iPSC) cells from patients (healthy and those of patients with cardiovascular diseases) as a platform to investigate the function of different G protein-coupled receptors