S100A8/A9 as a novel regulator of fibrinolysis in thromboinflammation
In plain English
AI plain-English summaryBlood clots in veins become dangerously hard to dissolve when the immune system’s alarm signal S100A8/A9 triggers platelets to release and hold onto a clot-stabilising protein called PAI-1. This matters because venous thrombosis—clotting in deep veins—is common in sepsis, obesity, diabetes, and cancer, and current treatments often fail when inflammation makes clots resistant to breakdown. Researchers know that high levels of PAI-1 and neutrophil NET formation correlate with organ damage, but the direct link between S100A8/A9 and PAI-1 release from platelets has not been tested. The team will use a custom “thrombolysis-on-a-chip” device with blood from healthy donors and patients with deep vein thrombosis to measure how S100A8/A9 alters clot dissolution. They will combine this with an animal model of DVT to test drugs that block PAI-1 or S100A8/A9. If successful, this fundamental science could reveal new drug targets for preventing clot-driven organ damage in inflammatory diseases. The work is mechanistic—it asks how immune cells and platelets talk to each other—but understanding that conversation could eventually lead to therapies that restore the body’s natural ability to clear clots, reducing the need for risky blood thinners.
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