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Field
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their website at https://www.naritalab.com/ Our laboratory investigates the biology of preneoplastic cell states, with particular interest in how changes in cell functional identity and plasticity are controlled
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exactly the immue system detects and responds to pre-cancereous lesions. Nevertheless, it is known that the activatin (or deactivation) of anti-cancer immune cells involves many different cell-types
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therapies. In our laboratory, we have established and validated a panel of genetically heterogeneous PDAC models. These studies have shown that malignant-cell genetics shape distinct, therapeutically
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. Intercellular relationships in breast cancer tissues also determine cellular activation states and expression profiles, rendering some cells susceptible and others resistant to new treatments. The aim
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microphysiological systems (MPS), are rapidly emerging as transformative and strategic technologies with the potential to redefine the future of health and life sciences. By integrating stem cell biology, patient
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of at least one would be essential: • Mxenes containing magnetic nuclei. • Metal organic framework derived carbon supported magnetic nanoparticles. • Large unit cell magnetic
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, immunology or a closely related field; - experience with relevant laboratory techniques such as mammalian cell culture, molecular biology, immunological assays, flow cytometry and/or virological methods
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at the IBDM (Institute of Developmental Biology of Marseille) within the “Physical approaches to cell dynamics and tissue morphogenesis (PoM)” team, and at IUSTI (University Institute of Industrial Thermal
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with human or yeast cell cultures are all a strong plus A background in structural biology and translation is the ultimate fit — but above all, we value curiosity, dedication, and a collaborative mindset
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science field Flow cytometry experience Mouse handling experience Basic molecular technique experience Job Description: Design and execute experiments across mouse and human systems, including primary cell