Neurovascular transmission in carotid arteries
In plain English
AI plain-English summaryThe carotid arteries that supply the brain with blood are controlled by nerves in ways that scientists barely understand. This project will map those nerves in mice and test how they respond to rising carbon dioxide levels during exercise. Carotid artery problems cause strokes, cognitive decline, and vascular dementia, yet the nervous system’s role in regulating blood flow through these vessels remains largely uncharacterised. Researchers know that high CO₂ dilates the arteries to boost cerebral blood flow, but they do not know which nerve types—sympathetic or sensory—drive that response, or whether the internal and external carotid branches behave differently. The project will also examine whether male and female mice show differences in nerve signalling. This is fundamental science. It will not produce a new drug or device. But understanding the molecular basis of neurotransmission in carotid arteries could eventually reveal why these nerves become dysfunctional in cardiovascular disease, and point toward ways to preserve brain blood flow in ageing and dementia. Similar foundational work on vascular control in other arteries has already informed treatments for hypertension and migraine.
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