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Position Summary The i-BRAIN Nanofabrication Facility at SMART is a world-class international facility supporting cutting-edge brain–computer interface (BCI) and neurotechnology research. We
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iPSC modelling Objective: Investigate molecular mechanisms underlying microglial vulnerability to cellular senescence in Multiple Sclerosis (MS), using human iPSC-derived models and advanced gene editing
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of their molecular mechanisms remains incomplete. This project, funded by the LEO Foundation, aims to systematically characterize how skin cells respond to inflammatory signals. By integrating cutting-edge proteomics
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to dissect the molecular and cellular mechanisms underlying human pathologies in fields ranging from cardiovascular medicine to neuroscience, from immunology to cancer and microbiology, with the final goal
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science to make a difference in patients' life. Humanitas Research is guided by unmet clinical needs and it leverages high-end technologies to dissect the molecular and cellular mechanisms underlying human
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to dissect the molecular and cellular mechanisms underlying human pathologies in fields ranging from cardiovascular medicine to neuroscience, from immunology to cancer and microbiology, with the final goal