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apply is 18 February, 2026. Description of the project Hypoxia inhibits appetite, yet the underlying mechanisms remain poorly understood. Our recent findings implicate GPCR signaling as a potential
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Description Human brain aging is one of the main risk factors for the development of neurodegenerative disorders, therefore, understanding the molecular mechanisms behind healthy brain aging is extremely
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ecosystem processes across elevational gradients in mountains (https://www.nature.com/articles/nature21027). Following from that work, and to better understand the mechanisms involved, about a decade ago we
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, a second task in the project is to engage in interdisciplinary collaborations with other researchers. This project is funded by the Bertil and Britt Svenssons Foundation for Lighting Technology
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its intracellular niche from xenophagy, a major cell‑autonomous defense mechanism that targets intracellular pathogens for degradation. This project aims to uncover the molecular strategies Ct uses
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actively influence cancer development by signaling to tumor cells and promoting tumor growth. A central mechanism involves neuron-to-glioma synapses, which transmit neuronal activity to glioblastoma cells
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This position is intended as a career-development opportunity for early-career researchers. Priority will be given to candidates who completed their PhD within the past three years. Exceptions may be granted in
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. Lead manuscript preparation for high‑impact journals; present at internal seminars and international conferences. Mentor PhD students and contribute to collaborative work Qualification requirements To be
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applicant is required to have a PhD degree or a foreign degree that is deemed equivalent in Computer Science, or another subject of relevance for the project. Documented knowledge and proven research
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collaborate closely with researchers across neuroscience, psychology, biomedical engineering, and clinical disciplines and will be involved in human lab experiments. Specific aims will be shaped jointly with