4.7 Article

TRPC3-Nox2 complex mediates doxorubicin-induced myocardial atrophy

期刊

JCI INSIGHT
卷 2, 期 15, 页码 -

出版社

AMER SOC CLINICAL INVESTIGATION INC
DOI: 10.1172/jci.insight.93358

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资金

  1. Japan Science and Technology Agency
  2. Precursory Research for Embryonic Science and Technology Program [JPMJPR1336]
  3. Scientific Research on Innovative Areas (Research in a Proposed Research Area 'Oxygen Biology') [14430291]
  4. Ministry of Education, Culture, Sports, Science, and Technology of Japan
  5. Scientific Research on Innovative Areas ('Living in Space') [16H01656]
  6. [25293018]
  7. [16776376]
  8. Grants-in-Aid for Scientific Research [17K15464, 26111004, 26111009, 16KT0013] Funding Source: KAKEN

向作者/读者索取更多资源

Myocardial atrophy is a wasting of cardiac muscle due to hemodynamic unloading. Doxorubicin is a highly effective anticancer agent but also induces myocardial atrophy through a largely unknown mechanism. Here, we demonstrate that inhibiting transient receptor potential canonical 3 (TRPC3) channels abolishes doxorubicin-induced myocardial atrophy in mice. Doxorubicin increased production of ROS in rodent cardiomyocytes through hypoxic stress-mediated upregulation of NADPH oxidase 2 (Nox2), which formed a stable complex with TRPC3. Cardiomyocyte-specific expression of TRPC3 C-terminal minipeptide inhibited TRPC3-Nox2 coupling and suppressed doxorubicin-induced reduction of myocardial cell size and left ventricular (LV) dysfunction, along with its upregulation of Nox2 and oxidative stress, without reducing hypoxic stress. Voluntary exercise, an effective treatment to prevent doxorubicin-induced cardiotoxicity, also downregulated the TRPC3-Nox2 complex and promoted volume load-induced LV compliance, as demonstrated in TRPC3-deficient hearts. These results illustrate the impact of TRPC3 on LV compliance and flexibility and, focusing on the TRPC3-Nox2 complex, provide a strategy for prevention of doxorubicin-induced cardiomyopathy.

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