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Helmholtz Zentrum München - Deutsches Forschungszentrum für Gesundheit und Umwelt | Leipzig, Sachsen | Germany | about 2 months ago
, Obesity and Vascular Research (HI-MAG) at Leipzig University, Germany, is part of Helmholtz Munich and aims to uncover the molecular and clinical underpinnings of metabolic, obesity and vascular disorders
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and related neurodegenerative disorders. Candidates with backgrounds in bioinformatics, computational biology, human genetics, statistical genetics, cancer genomics, multi-omics, or related areas
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of Pharmacology focuses on deciphering the molecular mechanisms that control intercellular communication, inflammation and regeneration in epithelial tissues (https://www.uni-marburg.de/de/fb20/bereiche/bpc
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damaged organs, treat genetic disorders, and address unmet medical needs. As a RAMP-UP doctoral fellow, you will join an international, interdisciplinary training environment designed to translate cutting
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tissues. In humans, defects in these structures cause a wide range of diseases, including retinal degeneration, developmental disorders and obesity. Many microbial pathogens also rely on flagella
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states, including the role of exchange interactions, spin splitting, and symmetry breaking, and how these features are affected by structural quality, disorder, and dielectric environment. The PhD project
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Helmholtz Zentrum München - Deutsches Forschungszentrum für Gesundheit und Umwelt | Germany | 3 months ago
drive metabolic disorders and to translate these insights into precise, context-specific immunotherapies. Ultimately, we strive to develop strategies that modulate immune responses while supporting tissue
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to the specific characteristics of each system. Please find more information about our group at go.fzj.de/ripoll-group Your Job Strong confinement in highly disordered and intricate environments is essential
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Join us in developing next-generation bioelectronic therapies for Parkinson’s disease and movement disorders using in situ formed electronic materials. Your work assignments We are seeking two
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differences in age-related diseases (Hoelzl et al., Nature Aging 2025). This project aims to understand the molecular mechanisms underlying sex bias in age-related disorders. More information about the lab