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to discover molecular pathways showing opposite patterns across risk- and protective-variant human iPSC-derived microglia. The student will prioritise pathways, perturb candidate genes, and test whether
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research group at Faculty of Medicine and MultiPark at Lund University. Our research aims to uncover how microglia dynamically modulate neural circuits to shape memory formation and extinction across health
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at Faculty of Medicine and MultiPark at Lund University. Our research aims to uncover how microglia dynamically modulate neural circuits to shape memory formation and extinction across health, psychiatric
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Postdoctoral fellow within Microglia–Neural Circuit Interactions in Memory and Disease (PA2026/2262)
research group at Faculty of Medicine and MultiPark at Lund University. Our research aims to uncover how microglia dynamically modulate neural circuits to shape memory formation and extinction across health
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investigating how microglia respond to challenges in brain organoid models. This will involve developing and applying advanced human iPSC-derived microglia–enriched cortical organoid models to investigate how
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: • Advanced Cellular Engineering: Lead the directed differentiation of hiPSCs into highly enriched neural and vascular lineages (e.g., cortical neurons, motor neurons, astrocytes, microglia, brain endothelial
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) are performed routinely. -Maintain and expand iPSC lines and differentiation into AD relevant cell types, including neurons, astrocytes, and microglia for functional and genomic characterization. -Collect
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The Gliomics Research Group (https://www.gliomics-lab.com/) is located at the Center for Neuroscience at UC Davis. Our group is interested in understanding the genetic regulation of microglia states
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as a key regulator of immune suppression in GBM, influencing lipid-laden macrophages and microglia, regulatory T-cell differentiation, cytotoxic T-cell exhaustion, and the wider balance between anti
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contribution of TNTs and EVs to astrocyte—neuron and microglia—neuron communication during tau pathology propagation. The study will examine how tau-induced cellular stress modulates TNT formation