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engineering methods (e.g., via CRISPR). Plan and execute experiments to probe robustness of tissue morphogenesis, particularly through quantitative imaging and large-scale molecular profiling (e.g., via scRNA
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alters immune responses against vaccines using next-generation human tissue and organoid models. Current vaccines against infectious diseases and cancer benefit only a subset of patients, partly due to our
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disorders, with the ultimate goal of clinical translation. Our research focuses on pre-leukemic bone marrow failure syndromes, supported by the integration of the Severe Chronic Neutropenia International
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Deutsches Zentrum für Neurodegenerative Erkrankungen | Bonn, Nordrhein Westfalen | Germany | about 8 hours ago
vivo models of PD Apply and further develop methodologies such as disease modeling, virus-mediated gene delivery, behavior, immunohistochemistry, tissue clearing and 3D imaging, image analysis, spatial
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multi-disciplinary approaches to answer these key questions including; immunology, oncology (in vitro model-organoid systems, ex vivo tissue culture), microbiology, next generation sequencing (16S seq
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of these patients. The goal of this project is to combine cutting-edge multi-omics technology, data analytics, machine learning and clinical samples from the human eye to decipher new insights into disease mechanisms
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/Radiobiology is dedicated to investigating molecular pathways in tumor and normal tissue response to irradiation. Your Tasks The candidate will perform a full proteomic analysis in existing tissue samples of two
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Max Planck Institute for Heart and Lung Research, Bad Nauheim | Bad Nauheim, Hessen | Germany | about 1 month ago
(EASY-nLC 1200). Applicants should have practical experience in sample preparation from cells, tissues and liquid biopsies for proteomic analysis. In particular, the qualified candidate should have
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derived from the host, the diet or the microbiome shape the biology and metabolism of tissue-resident immune cells (e.g. T cells, innate lymphoid cells (ILC)) in health and disease. In particular the work
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funded projects Your Profile Completed doctoral degree in materials science, chemistry, physics, engineering or a related field In-depth knowledge of semiconductor technology and the physics of solar cells