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enthusiastic early‑career researcher eager to develop quantitative, spatially explicit models that support climate‑resilient urban planning? Do you want to work at the intersection of Industrial Ecology, GIS
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biomaterials, polymer chemistry, cell biology, bioengineering, and food technology, as well as collaborators from partner universities and industry. What you do As a PhD candidate, you will play a key role in
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to develop 2D and 3D NMJ models for DM1, consisting of different combinations of patient-induced pluripotent stem cell (hiPSC)-derived neuronal and muscle cells, allowing the dissection of pathological
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AD, yet the mechanisms through which it shapes immune responses in the human brain remain poorly understood. This PhD project aims to uncover how genetic risk influences immune cell function in AD by
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the MSCA Doctoral Network and is therefore subject to specific eligibility rules. You must: At the time of recruitment, you must not hold a PhD degree. Comply with the MSCA mobility rule: you must not have
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-unions remain significant clinical challenges, reflecting an incomplete understanding of the complex biological processes governing bone regeneration. Critical factors such as stem cell dynamics
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edge epigenetic tools to engineer the next generation of animal cell lines for cost-effective, scalable, delicious cruelty-free meat?! Job description ‘Cultivated meat’, the production of genuine meat
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uptake of GNM into APCs; evaluation of the efficacy of GNM in terms of antigen presentation and APC/T-cell crosstalk. Training in cell culture and immune activation, flow cytometry, antigen presentation in
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-supported decision-making that contribute to the empowerment and democratic participation of citizens.The project addresses real-world challenges across domains such as healthcare, mobility, public governance
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and democratic participation of citizens.The project addresses real-world challenges across domains such as healthcare, mobility, public governance, and healthy lifestyles. By co-developing strategies