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organisms and plant organisms exposed in situ. Biomarkers of oxidative stress, elemental accumulation, and metabolic alterations will be analyzed to clarify the mechanisms linking PM composition and sources
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quantifying inclusion size and morphology and assessing the influence of surface features such as oxides, wire marks, and indents on stress concentrations. These data will inform numerical and analytical models
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to oxidative abiotic stress in the model plant Arabidopsis thaliana. Where to apply Website https://emploi.cnrs.fr/Offres/Doctorant/UMR7265-JULORD-014/Default.aspx Requirements Research FieldBiological
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response, the project will determine how mitochondrial stress signals regulate peroxisomal biogenesis, maturation and metabolism. The work will focus on: (i) characterizing alterations in peroxisomal
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the activity and stability of iridium oxide-based catalysts supported on various materials within a PEM electrolysis cell. Catalyst layers and membrane-electrode assemblies will be prepared and characterized in
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data relating to biological ageing, inflammation, oxidative stress, metabolic signalling and fibrosis The successful candidate will also be expected to contribute to the formulation and submission
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focusing on: 1. The systematic identification of PTMs induced by various environmental stresses (oxidative, osmotic, thermal, etc.). 2. The functional characterisation of these modifications on Cohesin and
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stresses, particularly to a nitric oxide donor (SNAP), induces a partial transition from the promastigote stage to the amastigote stage, a form specialized in intracellular survival within macrophages
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of training program faculty. Research specialties of the supporting faculty are broad, and include genetic, epigenetic, cell signaling, metabolic and oxidative stress mechanisms of toxicity with respect
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emerging evidence linking micro- and nanoplastics to liver disease, understanding their contribution to inflammation, oxidative stress and carcinogenesis is increasingly important. The project brings