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than 18,500 people, including over 14,000 students and 4,000 researchers from more than 120 different countries. Postdoctoral position in multiplexed single-cell RNAseq-based antibody discovery Mission The lab
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than 18,500 people, including over 14,000 students and 4,000 researchers from more than 120 different countries. Postdoctoral position in microfluidic RNAseq-based screening for optimal T-cell expansion
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than 18,500 people, including over 14,000 students and 4,000 researchers from more than 120 different countries. Postdoctoral Position in Computational Genomics, Machine Learning & Single-Cell Biology Mission
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Your position The overall goal of the lab is to understand the cause of multiple sclerosis, focusing on the interactions between autoreactive B cells, the lymphotropic virus EBV, and the cellular
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neurons regulate dendritic-cell and T-cell function neuronal sensing of inflammatory and tumour-derived signals neuropeptide and neurotransmitter regulation of anti-tumour immunity neural control of immune
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-negative pathogens (Klebsiella pneumoniae, Acinetobacter baumannii, Pseudomonas aeruginosa). The project will combine single-cell/single-bacterium imaging approaches with the lab's tissue-engineered
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single-cell genomics, live imaging, genetics and protein biochemistry. We are hosted at the Institute of Plant Sciences, University of Bern, and work at the intersection of plant developmental genetics
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the Department of Biomedicine at Mattenstrasse 28, 4057 Basel. Project: The aim of the project is to elucidate molecular intra- and extracellular mechanisms of signaling modulating myeloid cells’ immune
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disease progression. However, the mechanisms by which peripheral neural circuits detect changes in tissue state and instruct immune cell function remain poorly understood. The successful candidate will lead
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optical technologies to study mechanisms of cell surface signaling, cancer neuroscience, and protein engineering, integrating molecular biology, cell biology, and systems neuroscience approaches. To support