Investigating neural fine-tuning of pancreatic islet physiology in health and disease
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AI plain-English summaryThe pancreas relies on signals from nerves to fine-tune insulin release, but how this neural wiring adapts in diabetes remains largely unknown. This project addresses a critical gap: while pancreatic hormones like insulin are known to fail in diabetes, the role of peripheral nerves in controlling their release on a minute-by-minute basis has been overlooked. Understanding this neural-pancreas crosstalk could reveal why hormone regulation breaks down in the disease. If successful, the research could identify molecular targets for therapies that prevent or delay diabetes progression by harnessing neural signalling to control hormone release. The work also examines sex differences in neural-pancreas interaction, which may explain why diabetes progresses differently in men and women—potentially leading to sex-specific treatments. This is primarily fundamental science. The researcher will use genetic tools in live zebrafish to map and manipulate pancreatic nerves, then validate findings in human islet cells. While no immediate clinical application exists, similar fundamental studies of neural control in other organs have led to bioelectronic medicine approaches now in clinical trials. A deeper understanding of how nerves tune pancreatic function could eventually open entirely new therapeutic avenues for diabetes.
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