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research under PI mentorship. Design, execute, and analyze translational studies focused on hereditary hearing loss and LOXHD1 dysfunction. Develop and characterize preclinical models, including mouse models
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on the Aragona lab can be found at: https://renew.ku.dk/research/aragona-group/ Our group and research The team studies the molecular mechanisms that dictate stem cell identity and govern stem cell fate in
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Università di Pisa - Dipartimento di Patologia chirurgica, medica, molecolare e dell'area critica | Italy | 24 days ago
Research contract - Department of Surgery, Medical, Molecular and Critical Area Pathology - duration 24 months - expiration date 4th april 2026 at 1 pm Where to apply Website https://bandi.unipi.it/public
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candidate will contribute to the theoretical and physical chemistry aspects of the project, with particular emphasis on the analysis and modelling of non-equilibrium chemical systems and reaction–diffusion
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Université Paris-Saclay GS Life Sciences and Health | Fontenay aux Roses, le de France | France | 22 days ago
. We have also developed highly accurate structural models of control protein complexes in association with Rad51 filaments. We will use a multidisciplinary approach based on genetics, molecular biology
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this project, we will be in the ideal position to uncover mechanism of action of these disease relevant bacteria. This work will include cell culture work (cell lines and primary cells) as well as mouse models
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University of California, Los Angeles | Los Angeles, California | United States | about 23 hours ago
experience working with human immune system and tumor models in mice (xenograft or syngeneic). • At least 5 years of post-graduate research experience in immunology, biochemistry, molecular biology, cell
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dynamics during regeneration, aging, and cancer, and how these processes can be modulated. Our research is primarily conducted in vivo. We combine genetic mouse models (lineage tracing, conditional
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capable of suppressing the disease-causing early developmental program for therapeutic intervention. Findings from model developmental systems are applied to understand human diseases, including cancers and
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experience in bioinformatics, transcriptomics, neuroanatomy, animal models, calcium imaging, molecular and cell biology techniques will be considered. Additional Information Work Location(s) Number of offers