4.7 Article

Sonodynamic therapy reduces iron retention of hemorrhagic plaque

期刊

出版社

WILEY
DOI: 10.1002/btm2.10193

关键词

ferroportin 1; intraplaque hemorrhage; iron; macrophage; sonodynamic therapy

资金

  1. National Key Scientific Instrument and Equipment Development Projects of China [81727809]
  2. State Key Program of National Natural Science Foundation of China [81530052]

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The study demonstrates that sonodynamic therapy can treat hemorrhagic atherosclerotic plaques by regulating iron retention and reducing plaque burden. It also shows therapeutic effects on mouse plaques with high susceptibility to hemorrhage, indicating its potential translational value in clinical practice for advanced atherosclerosis patients.
Intraplaque hemorrhage (IPH) plays a major role in the aggressive progression of vulnerable plaque, leading to acute cardiovascular events. We previously demonstrated that sonodynamic therapy (SDT) inhibits atherosclerotic plaque progression. In this study, we investigated whether SDT could also be applied to treat more advanced hemorrhagic plaque and addressed the underlying mechanism. SDT decreased atherosclerotic burden, positively altered atherosclerotic lesion composition, and alleviated iron retention in rabbit hemorrhagic plaques. Furthermore, SDT reduced iron retention by stimulating ferroportin 1 (Fpn1) expression in apolipoprotein E (ApoE)(-/-) mouse plaques with high susceptibility to IPH. Subsequently, SDT inhibited iron-overload-induced foam-cell formation and pro-inflammatory cytokines secretion in vitro. Moreover, SDT reduced levels of the labile iron pool and ferritin expression via the reactive oxygen species (ROS)-nuclear factor erythroid 2-related factor 2 (Nrf2)-FPN1 pathway. SDT exerted therapeutic effects on hemorrhagic plaques and reduced iron retention via the ROS-Nrf2-FPN1 pathway in macrophages, thereby suggesting that it is a potential translational strategy for patients with advanced atherosclerosis in clinical practice.

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