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) The main aim will be to profile the cellular components of tissue microenvironments (TME) in healthy and inflamed sites using State-of-the-Art Mass Spectrometry-Based Multi-Omics. We aim to dissect
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with therapeutic response and resistance to RAS inhibition in non-small cell lung cancer (NSCLC) in the laboratory of Ferdinandos Skoulidis, MD, PhD, at the University of Texas MD Anderson Cancer Center
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the University of Leuven, which ranks among the world’s top 50 universities. At our Center, researchers study the cellular mechanisms of health and disease in the central nervous system. In collaboration with
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. Advanced cell and mitochondrial biology: primary human fibroblasts, mitochondrial bioenergetics, import assays, respiratory chain phenotyping, in vivo disease models. Multi‑omics: single‑cell and bulk
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our publications here . Our team is at the forefront of bringing autologous cell replacement therapies with CRISPR-edited muscle stem cells towards the clinic (https://www.mdc-berlin.de/news/news/deep
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responses and processes such as definition of primordia in shoot apical meristems, selecting the site of organogenesis in lateral root primordia, specification of stem cell niche in roots, directional growth
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individuals, biochemical markers, cognitive testing, animal models, and cell biology experiments. Our long-term goal is to contribute to the development of new treatments for neurodegenerative diseases, where
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programme Is the Job related to staff position within a Research Infrastructure? No Offer Description The project involves validation of new T-cell receptor-based immunotherapies in vitro for safety and
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at Karolinska Institutet and SciLifeLab, Stockholm, Sweden. Our research focuses on elucidating the molecular mechanisms underlying cell division and chromatin organization in mouse and human cells. We employ
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represents tissues as composed of cells whose geometry results from hydraulic equilibrium (water exchanges) and mechanical equilibrium (cell wall deformation). The work carried out has led