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focused on the development of novel organoid-based infection models for antimicrobial discovery. The project will be focused on increasing the throughput of human lung microtissue models our lab has
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between nutrition, metabolism and the epigenome. The group uses a translational approach from in vitro systems and mice to humans combining next-generation sequencing, single-cell methodologies, genetics
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development X-ray based methods focusing on the evaluation of the structure – property relationship in applications such as biomedicine and space. In the frame of an ESA project interfacing research and
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of technological platforms available at the Department of Biomedicine. Careful mentorship and respect for human values, including diversity, equity, and inclusiveness, are driving forces of our group, ensuring
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. PatriciaNitzsche, Stv. Leiterin Human Resources / Dep. Head Human Resources
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scale to predict structures of human protein-protein interactions (Burke et al. NSMB 2023), work we have continued to expand upon. More recently, we have also made use of predicted structures across
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Swiss Federal Institute for Forest, Snow and Landscape Research WSL | Switzerland | about 1 hour ago
complete application to Beatrice Lamprecht, Human Resources WSL, through our webpage. Applications via email will not be considered.The application should include: 1) a cover letter with a statement about
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on molecular and cellular responses in human cells. You will develop new approach methodologies for in vitro toxicology by computational integration of various sources of high-content data (i.e. DNA sequencing
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sustainability legislation such as due diligence regulations and import restrictions. Such legislation requires companies to provide granular insights on environmental and human rights-related risks in
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of chemicals on molecular and cellular responses in human cells. You will develop new approach methodologies for in vitro toxicology by computational integration of various sources of high-content data (i.e. DNA