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single molecules using fluorescent nanoparticles or super-resolution. Summary of the scientific project: Understanding many complex diseases and designing rational treatments requires research on multiple
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well as the characterization by mass spectrometry of the components of supramolecular complexes discovered in the laboratory that are involved in NF-κB activation. We have also demonstrated their constitutive presence in tumor
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automation to disrupt healthcare and address complex medical challenges including drug discovery, biosensing and medically relevant metabolic engineering and therapeutics. This Junior Professorship Chair (CPJ
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approaches to complex chronic diseases. It fits fully within the priorities of the Inserm Strategic Plan, particularly the axis dedicated to cardiovascular and brain health and integrative approaches
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the understanding of the complex biological mechanisms underlying oncogenesis and therapeutic resistance, ultimately improving outcomes for patients suffering from hard-to-cure neoplasms. Inserm will invest in
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of disabilities and the reduction of costs related to complex bone reconstructions. The recruitment of a CPJ for this project is fully aligned with Inserm's 2020-2025 Strategic Plan because it reinforces
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recognition, signaling pathways and functional responses of T cells in order to enhance their activity in complex pathological environments such as solid tumors. The research program will explore strategies