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clinically relevant models of cardiovascular disease and inflammation, super-resolution in-vivo microscopy, as well as multi-omics approaches including single-cell RNA sequencing, bulk RNA sequencing, multi
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Higher Education and the German Federal Ministry of Education and Research. Our group use stem cell models, high throughput sequencing technologies (ChIP-seq, ATAC-seq, RNA-seq, Hi-C), CRISPR-Cas9 mediated
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–Ras signaling cascade Developing generative AI models for protein design within an existing multimodal framework integrating sequence, structure, functional, microscopy and molecular dynamics data
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these questions, we are combining tools such as fluorescence microscopy, chromatin immunoprecipitation, next-generation sequencing, and quantitative mass spectrometry, to examine the influence of factors like
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sequencing, genome-wide data integration, statistical modeling, and hypothesis-driven experimental design, preparing them for leadership roles at the interface of molecular biology and data science. YOUR TASKS
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Max Planck Institute for Chemical Physics of Solids, Dresden | Dresden, Sachsen | Germany | about 1 month ago
generously funded and successful candidates will receive competitive payment based on the primary location of their research project. We seek to recruit multiple PhD students in 2026 to a range of inter
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. g. single cell sequencing and proteomic). Theoretical and practical knowledge in molecular and cell biology and/or protein chemistry are expected for successful candidates. The candidate should have
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project. We seek to recruit multiple PhD students in 2026 to a range of inter‐institutional research projects in the broadly defined field of quantum materials. Research work will be combined with graduate
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sequencing, genome-wide data integration, statistical modeling, and hypothesis-driven experimental design, preparing them for leadership roles at the interface of molecular biology and data science. Your Tasks
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interaction that affects HSC output in aging. This will be achieved via the implementation of state of the art multicolor flow cytometry analyses, imaging, omics techniques (e. g. single cell sequencing and