Protein S-TFPI anticoagulant pathway:- molecular mechanisms and therapeutic potential.
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AI plain-English summaryBlood clots that form inside blood vessels can cause heart attacks and strokes, and the body’s own defence against this relies on a protein called TFPI, which needs a helper called protein S to work properly. Exactly how this pair stops clotting has remained unclear, partly because mice lacking either protein die before birth, making them impossible to study. This project will fill that gap by building new laboratory tools to watch TFPI and protein S in action under flowing blood, and by solving the atomic structure of key parts of protein S to see how it grips TFPI. The team will also create a genetically modified mouse line that survives with a subtly altered protein S, allowing them to test the pathway’s role in living animals for the first time. If successful, this fundamental science could reveal a new way to prevent dangerous clots without the bleeding risks of current drugs. The researchers will also test whether injecting antibodies that extend TFPI’s lifespan in the bloodstream can safely boost the body’s natural clot-stopping power—a potential future treatment for thrombosis.
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