Literature DB >> 32936966

Insulin-like growth factor-binding protein 3 inhibits angiotensin II-induced aortic smooth muscle cell phenotypic switch and matrix metalloproteinase expression.

Suwei Chen1, Hong Chen1, Yongliang Zhong1, Yipeng Ge1, Chengnan Li1, Zhiyu Qiao1, Junming Zhu1.   

Abstract

NEW
FINDINGS: What is the central question of this study? Insulin-like growth factor 1 and its major binding protein insulin-like growth factor binding protein 3 (IGFBP3) are involved in collagen deregulation in several cardiovascular diseases: what is the role of IGFBP3 in thoracic aortic dissection and does it regulate aortic smooth muscle cells' phenotypic switch? What is the main finding and its importance? IGFBP3 inhibits aortic smooth muscle cells' phenotypic switch from a contractile to a synthetic phenotype, decreases matrix metalloproteinase 9 activation and suppresses elastin degradation. These findings provide a better understanding of the pathogenesis of thoracic aortic dissection. ABSTRACT: Thoracic aortic dissection (TAD) is characterized by aortic media degeneration and is a highly lethal disease. An aortic smooth muscle cell (AoSMC) phenotypic switch is considered a key pathophysiological change in TAD. Insulin-like growth factor binding protein 3 (IGFBP3) was found to be downregulated in aortic tissues of TAD patients. The present work aimed to study the function of IGFBP3 in AoSMCs' phenotypic switch and matrix metalloproteinase (MMP) expression. We established a mouse model of TAD by angiotensin (Ang) II infusion to β-aminopropionitrile-administrated mice, and found decreased IGFBP3 expression accompanied by aortic dilatation and elastin degradation in vivo. Further, mouse (m)AoSMCs were isolated from mouse thoracic aorta and treated with Ang II. Ang II induced downregulation of IGFBP3 in vitro. To further study the function of IGFBP3, primary mAoSMCs were infected with adenovirus expressing IGFBP3 followed by Ang II induction. Enforced upregulation of IGFBP3 decreased MMP9 expression and activation as well as increasing tissue inhibitor of metalloproteinase (TIMP) 1 expression in Ang II-induced mAoSMCs. No difference was observed in MMP2 and TIMP3 expression. IGFBP3 suppressed subsequent Ang II-induced elastin degradation in vitro. IGFBP3 inhibited Ang II-induced mAoSMCs' phenotypic switch as evidenced by increased smooth muscle actin α-2 (ACTA2) and myosin heavy chain 11 (MYH11) expression and decreased secreted phosphoprotein 1 (SPP1) and vimentin expression. Taken together, the present study demonstrates the role of IGFBP3 in preserving AoSMCs' contractile state and reducing MMP9 activation and thus promoting elastic fibre synthesis, which provides a better understanding of the pathogenesis of TAD.
© 2020 The Authors. Experimental Physiology © 2020 The Physiological Society.

Entities:  

Keywords:  IGFBP3; MMPs; aortic smooth muscle cell; phenotypic switch; thoracic aortic dissection

Mesh:

Substances:

Year:  2020        PMID: 32936966     DOI: 10.1113/EP088927

Source DB:  PubMed          Journal:  Exp Physiol        ISSN: 0958-0670            Impact factor:   2.969


  2 in total

1.  Upregulated IGFBP3 with Aging Is Involved in Modulating Apoptosis, Oxidative Stress, and Fibrosis: A Target of Age-Related Erectile Dysfunction.

Authors:  Daoyuan Hu; Yunlong Ge; Yubin Cui; Ke Li; Jialiang Chen; Chi Zhang; Qiwei Liu; Lizhao He; Weijun Chen; Jun Chen; Cheng Hu; Hengjun Xiao
Journal:  Oxid Med Cell Longev       Date:  2022-02-03       Impact factor: 6.543

2.  Sustained Downregulation of Vascular Smooth Muscle Acta2 After Transient Angiotensin II Infusion: A New Model of "Vascular Memory".

Authors:  Lucie Pothen; Roxane Verdoy; Delphine De Mulder; Hrag Esfahani; Charlotte Farah; Lauriane Y M Michel; Flavia Dei Zotti; Bertrand Bearzatto; Jerome Ambroise; Caroline Bouzin; Chantal Dessy; Jean-Luc Balligand
Journal:  Front Cardiovasc Med       Date:  2022-03-14
  2 in total

北京卡尤迪生物科技股份有限公司 © 2022-2023.