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novel infant gut models and apply it to investigate microbiota–immune-pathogen interactions, generating knowledge that can support future interventions to improve infant health. We welcome applications
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studies the gut-liver and gut-brain axis focusing on the interplay between metabolism and gut immune cells, the enteric nervous system (ENS) and the microbiota in health and disease. We are particularly
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. The project builds on our previous work on the dissemination of peptidoglycan fragments across the body from the gut. We are looking for somebody that has highly transversal expertise in biochemistry
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to double by 2050, the need for innovative, science-led solutions has never been greater. This BBSRC-funded project takes a novel approach to this challenge, harnessing the power of the gut microbiota
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Position Summary This position is available in the lab of Dr. Yolanda Huang (Department of Microbiology & Immunology). Our overarching research goal is to advance our understanding of the gut microbiota
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-mitochondrial axis connection or calibration of allergic immune responses by the gut microbiome. Mechanistic insights gained from this research would be applied to next-generation development of microbiota-based
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discipline to join the Microbiome-Brain-Gut Axis research programme at APC Microbiome Ireland and University College Cork. The successful candidate will join the Research Ireland funded project focussed
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College of Medicine in Hershey, PA. We are focused on understanding the interactions between our bodies and the human gut microbiota by characterizing the molecular mechanisms underlying this relationship
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: The Winek research group investigates the mechanisms underlying bidirectional brain-body communication, with a focus on the immune system, molecular regulators of immune responses, and the gut microbiota. We
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, which are to some degree absorbed and/or metabolized by gut microbiota. Characterizing food- and microbiota-derived molecules and determining their levels in biological samples from humans is essential