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Field
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clinical cohorts to perform repertoire analyses of memory B cells and antibodies from multiple compartments and time points. The overall goal is to determine whether mucosal immune responses are seeded from
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equipment used by multiple researchers (e.g., DNA and RNA extraction rooms, PCR machines, instruments to measure concentration and integrity of nucleic acids, and knowledge of best practices for down-stream
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such as state-of-the-art organoid technologies, high-throughput drug screening, cell barcoding and single cell sequencing. The group is located at Science for Life Laboratory , which hosts multiple cutting
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and to discover targetable pathways relevant to kidney disease. Duties The successful candidate will lead experimental work across multiple PTEC injury models, including toxic, metabolic, inflammatory
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Targeting of Human Cytomegalovirus (HCMV) in Brain Cancer”, which integrates sequencing-based virus discovery, multi-omics analysis, and translational cancer research. Duties About the Project Our research
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. Duties The successful candidate will lead experimental work across multiple PTEC injury models, including toxic, metabolic, inflammatory, and hypoxia–reoxygenation stress. Key tasks include functional
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biology, genomics/bioinformatics, systems genetics, or closely related field. Demonstrable expertise in at least two of: High‑throughput sequencing assays (ATAC‑Seq, ChIP‑Seq, BS‑Seq/EM‑Seq, RNA‑Seq
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at least two of: High‑throughput sequencing assays (ATAC‑Seq, ChIP‑Seq, BS‑Seq/EM‑Seq, RNA‑Seq); library prep and QC. Chromatin conformation (Hi‑C/Micro‑C) and analysis of TADs/compartments/loops
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that varies profoundly by both geography and time. Until now it has been difficult to study multiple pathogens simultaneously, but advances in sequence methodologies and bioinformatics are revolutionising
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sequencing instruments into microscopes! Your mission You will join our team, a leading group in the field of DNA nanotechnology specialized in creating molecular tools for life-science research (http