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-specific inflammation” and aims to develop and apply advanced imaging tools to study immune cell dynamics in murine models of inflammation and cancer. More about our work: https://www.medizin.uni-muenster.de
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chromatin organization and non-coding RNAs influence gene expression and define the phenotype of vascular cells and tissues. We are particularly interested in the behavior of endothelial cells during
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of the previously described research disciplines converge in this research area. They are thoroughly electrochemical with regard to their interaction with the "battery cell" system and subjected to an in-depth post
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”, which aims to functionally validate newly identified genetic variants that regulate quantitative spermatogenesis. This integrative project combines GWAS, bulk and single-cell transcriptomics, protein
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practical expertise in protein biochemistry, molecular biology, or cell biology Strong interest in basic and translational cancer research, Team player, who thrives by working in interdisciplinary teams
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immunomodulatory factors (de Almeida et al. Sci Immunol 2022, Chao et al. Nat Immunol 2023, Soll et. al Nat Immunol 2024). We use novel cutting-edge technologies in the area of high-dimensional single-cell analysis
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PhD position (f/m/d) “How to regulate the duration of mitosis and control cell fate decisions” Centre for Molecular Biology (ZMBH) Heidelberg University, Germany We are seeking highly motivated PhD
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, treatment, and prevention of human diseases (e.g., Li et al., Nature Metabolism, 2024; Ni et al., Cell Metabolism, 2023; Leung et al., Science Translational Medicine, 2022; Seelbinder et al., Nature
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analysis and determination of HIV clonality in HIV-infected cells to understand the mechanistic link between low-level protein expression and immune activation. Your Tasks: • Perform and analyze
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Collaborative Doctoral Project (PhD Position) - AI-guided design of scaffold-free DNA nanostructures
. Such structures can be used to construct artificial cell mimics and new materials. A scaffold-free DNA tile assembly is a programmable method for the formation of two- and three-dimensional DNA structures which