LRG1 and dysfunctional vessel growth
In plain English
AI plain-English summaryBlood vessels in diseases like cancer and diabetic retinopathy grow into a tangled, leaky mess that starves tissues of oxygen and blocks drugs from reaching their targets. This matters because current treatments simply destroy these abnormal vessels, which can worsen oxygen starvation and damage healthy tissue. A better approach would be to coax the vessels back to normal—a strategy called vascular normalisation. But doctors cannot do this yet because they do not understand what makes vessel growth go wrong in the first place. The problem is puzzling: the same molecules that build healthy blood vessels during development also drive the chaotic growth in disease, meaning something else must be corrupting the process. The researchers have identified a candidate culprit: a protein called LRG1 that is abundant in diseased tissue and disrupts normal vessel formation. Blocking LRG1 in animals restores vessel structure. This project will uncover exactly how LRG1 interferes with the signalling between blood vessel cells and the surrounding support cells that keep them stable. If successful, this fundamental science will reveal a core mechanism of pathological vessel growth. That knowledge could eventually lead to drugs that normalise tumour blood vessels, improving chemotherapy delivery, or that repair leaky retinal vessels in diabetic eye disease.
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