Melanopsin signalling: phototransduction, behavioural regulation and clinical relevance.
In plain English
AI plain-English summaryA specialised set of light-sensitive cells in the retina—melanopsin retinal ganglion cells—does not just help us see, but also sets our body clocks, controls alertness, and regulates sleep timing. These cells are distinct from the rods and cones used for vision. They detect light intensity, not images, and send signals directly to brain regions that govern circadian rhythms and behaviour. Despite their discovery over two decades ago, scientists still do not fully understand how these cells process light or how eye diseases affect their function. This project aims to close that gap. The researchers will map the molecular steps by which melanopsin cells respond to light, and trace how those signals travel to brain targets. They will also study people with common eye diseases—such as glaucoma or age-related macular degeneration—to measure whether damage to these cells disrupts sleep, daytime alertness, and the timing of the body’s internal clock. If successful, the work could lead to evidence-based guidelines for ophthalmologists, helping them advise patients on managing sleep and circadian problems linked to eye disease. It may also inform the design of lighting environments that better support human health.
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