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contribution to proteinuria-induced kidney injury. Our research integrates molecular and cellular biology, mouse models, advanced imaging, and omics technologies to uncover mechanisms driving chronic kidney
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plant–microbe associations and harness their potential for sustainable food production. Our focus is on uncovering the molecular mechanisms by which plants and microbes interact-ranging from early
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thereafter. Project overview The goal of this project is to advance the understanding of failure mechanisms in optical phase change materials used in photonic devices, using synchrotron X rays and X ray free
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Society (Kræftens Bekæmpelse) and focuses on uncovering novel mechanisms regulating PARP1 function and ADP-ribosylation signalling in genome maintenance and cancer biology. Building on recent discoveries
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, execute, and analyze PK, biodistribution, and efficacy studies in rodent models. Establishing in vitro screening models to assess the delivery efficiency of siRNA and ASOs. Investigating the mechanisms
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frontline research aimed at identifying novel mechanisms underlying the dynamics of pain neuroplasticity, while also advancing understandings of this topic within the academic world and beyond. Specifically
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funded 2 year postdoctoral position starting 1 January, 2027 or as soon as possible thereafter. Project overview The goal of this project is to advance the understanding of failure mechanisms in optical
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inequalities - both objective and subjective - related to European citizens’ democratic support? It aims: first, to advance knowledge on the mechanisms through which different types of inequality undermine
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the start date. Job description This opportunity is positioned at the heart of a collaboration between Aarhus University, EPFL and DTU to understand microbiological mechanisms underpinning the Greenland Ice
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directional or high-gain solutions, mechanically or electronically beam-steerable configurations, or compact designs that must be integrated into constrained platforms. You are experienced with modern