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to comprehensively characterize the role of ENPP1 across the different stages of metastasis, assessing its potential as a therapeutic target in preclinical models and as a risk biomarker in patients with breast cancer
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of this project is to elucidate the role of cathepsin in promoting cancer growth and migration, and define the molecular mechanisms behind it. In particular, this project is composed of 3 objectives: - Objective 1
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(iv) writing reports and scientific articles. This work will be carried out in close collaboration with researchers from the Institute of Molecular Sciences in Bordeaux and the Institute of Chemical
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such as computational modelling, molecular and materials science, bioinformatics and related applied research, creating opportunities for interdisciplinary innovation and impact. In addition to research
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techniques, as well as the handling of animal models in compliance with current regulations. Where to apply Website https://www.fjd.es/iis-fjd/es/formacion-empleo/empleo/convocatoria-tecnico-labo… Requirements
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motivated and enthusiastic colleague with strong iPSC experience and disease modelling skills to join our team. About the project The ultimate goal of this project is to develop and apply advanced human iPSC
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AUSTRALIAN NATIONAL UNIVERSITY (ANU) | Canberra, Australian Capital Territory | Australia | 29 days ago
connected to phylogenetic software, methods and models, molecular evolution, hybridisation and introgression, and the evolutionary histories of eucalypts, viruses, bacteria, and Archaea. The ANU Phylogenomics
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and BSL-4 laboratories utilizing a wide range of techniques such as in vitro and in vivo infection models, flow cytometry, ELISA, western blots, and multiplex immunoassays. Our projects rely
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that the toxin induces DNA damage responses in cultured cells that activates a senescence tumour suppressor mechanism (https://doi.org/10.1038/s41467-019-12064-1). Cells undergoing toxin-induced senescence undergo
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endothelial cell lines. ➢ Experience in myeloid cell depletion techniques in murine models and molecular biology techniques (PCR, qPCR, genotyping, CRISPR). ➢ Experience in functional analyses of myeloid cells