4.8 Article

PIEZO1 mediates a mechanothrombotic pathway in diabetes

期刊

SCIENCE TRANSLATIONAL MEDICINE
卷 14, 期 626, 页码 -

出版社

AMER ASSOC ADVANCEMENT SCIENCE
DOI: 10.1126/scitranslmed.abk1707

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资金

  1. One Brave Idea Award from the American Heart Association
  2. Verily Life Sciences
  3. AstraZeneca
  4. Quest Diagnostics
  5. National Heart, Lung, and Blood Institute [R35HL135775]
  6. Natural Science Foundation of Fujian Province [2019 J01767]
  7. China Scholarship Council [201808350016]

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This study identified dysregulation of the mechanosensory ion channel Piezo1 in platelets, red blood cells, and neutrophils of patients with type 2 diabetes mellitus (T2DM), leading to prothrombotic cellular responses. Inhibition of Piezo1 protected against thrombosis, providing a new target for modulating T2DM-related thrombosis.
Thrombosis is the leading complication of common human disorders including diabetes, coronary heart disease, and infection and remains a global health burden. Current anticoagulant therapies that target the general clotting cascade are associated with unpredictable adverse bleeding effects, because understanding of hemostasis remains incomplete. Here, using perturbational screening of patient peripheral blood samples for latent phenotypes, we identified dysregulation of the major mechanosensory ion channel Piezo1 in multiple blood lineages in patients with type 2 diabetes mellitus (T2DM). Hyperglycemia activated PIEZO1 transcription in mature blood cells and selected high Piezo1-expressing hematopoietic stem cell clones. Elevated Piezo1 activity in platelets, red blood cells, and neutrophils in T2DM triggered discrete prothrombotic cellular responses. Inhibition of Piezo1 protected against thrombosis both in human blood and in zebrafish genetic models, particularly in hyperglycemia. Our findings identify a candidate target to precisely modulate mechanically induced thrombosis in T2DM and a potential screening method to predict patient-specific risk. Ongoing remodeling of cell lineages in hematopoiesis is an integral component of thrombotic risk in T2DM, and related mechanisms may have a broader role in chronic disease.

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