4.7 Article

TNAP inhibition attenuates cardiac fibrosis induced by myocardial infarction through deactivating TGF-β1/Smads and activating P53 signaling pathways

Journal

CELL DEATH & DISEASE
Volume 11, Issue 1, Pages -

Publisher

SPRINGERNATURE
DOI: 10.1038/s41419-020-2243-4

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Funding

  1. National Natural Science Foundation of China [31800976, 81970203, 81570212]
  2. Basic Research and Frontier Exploration Project of Chongqing [cstc2018jcyjAX0058]
  3. Science and Technology Plan Project of Chongqing Yuzhong District [20140111]
  4. Chinese Medicine Science and Technology Project of Chongqing Health and Family Planning Commission [ZY201702073]
  5. Medical Research Project of Chongqing Health Bureau [2012-1-012]
  6. First Affiliated Hospital of Chongqing Medical University Cultivation Fund [PYJJ2017-28]
  7. Cardiac Rehabilitation and Metabolic Therapy Research Foundation
  8. Advanced Research Foundation Project of Cardiovascular Health Institute, China Cardiovascular Health Alliance
  9. Medical Research Project of Chongqing Health and Family Planning Commission [2015ZDXM003]
  10. Chongqing Science and Health Joint Medical Research Project [2018QNXM024]

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Tissue nonspecific alkaline phosphatase (TNAP) is expressed widely in different tissues, modulating functions of metabolism and inflammation. However, the effect of TNAP on cardiac fibrosis remains controversial and needs to be further studied. The present study aims to investigate the role of TNAP on myocardial infarction (MI)-induced fibrosis and its mechanism. TNAP was upregulated in patients with MI, both in serum and injured hearts, and predicted in-hospital mortality. TNAP was also significantly upregulated after MI in rats, mostly in the border zone of the infarcted hearts combined with collagen synthesis. Administration of TNAP inhibitor, tetramisole, markedly improved cardiac function and fibrosis after MI. In the primary cultures of neonatal rat cardiac fibroblasts (CFs), TNAP inhibition significantly attenuated migration, differentiation, and expression of collagen-related genes. The TGF-beta 1/Smads signaling suppression, and p-AMPK and p53 upregulation were involved in the process. When p53 inhibitor was administered, the antifibrotic effect of TNAP inhibition can be blocked. This study provides a direct evidence that inhibition of TNAP might be a novel regulator in cardiac fibrosis and exert an antifibrotic effect mainly through AMPK-TGF-beta 1/Smads and p53 signals.

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