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vectors studies, including vector design and cloning. RNA sequencing. Proteomics/transcriptomics and bioinformatics. PLA. Immunohistochemistry on brain sections. Surgery to implant electrodes and EEG
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Model. Adv. Sci. 2025, 2500400. https://doi.org/10.1002/advs.202500400 Research Area Applications are invited from outstanding candidates with expertise in molecular biology, biotechnology, and/or
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groundbreaking science meets meaningful impact. We're seeking a dedicated Postdoctoral Associate to contribute to innovative research focused on capsid- and genome-modified next generation recombinant AAV vectors
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cutting-edge analytical approaches (Multilevel Vector Autoregressive Models, Dynamic Structural Equation Modelling, Hidden Markov Models, Causal discovery algorithms, Reinforcement Learning), Contributing
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workflows. Your expertise will combine cutting-edge tool development, including molecular cloning, lentiviral vector and library design, and the computational analysis of high-content transcriptomic and
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mediating cellular senescence. Here a library of lentiviral vectors carrying miRNA target sequences, regulating expression of a reporter gene, will be used to identify and characterize senescence associated
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Deutsches Zentrum für Neurodegenerative Erkrankungen | Bonn, Nordrhein Westfalen | Germany | 29 days ago
, immunostaining of cells and tissue, genetic engineering of neurons by vector design and cloning, virus-based infection techniques, light-based manipulation of neuronal activity, and electrophysiology High degree
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The Arthropod Disease Vector Biology lab (https://www.imbb.forth.gr/en/research ), headed by Dr. Michail Kotsyfakis, invites applications for one post-doctoral research associate position to work on the funded EU
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The University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | 3 months ago
research interest is to develop adeno-associated virus (AAV) vectors to treat various diseases such as neurodegeneration disorders and liver diseases using animal and other research models, and to study the
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(viral vector and/or extracellular vesicle-based) for myocardial regeneration. Key project goals are to develop and to deploy novel gene/cell-based therapeutics to restore cell-specific expressions