Literature DB >> 29197521

High phosphate-induced downregulation of PPARγ contributes to CKD-associated vascular calcification.

Liang Liu1, Yong Liu1, Ying Zhang1, Xianjin Bi1, Ling Nie1, Chi Liu1, Jiachuan Xiong1, Ting He1, Xinlin Xu1, Yanlin Yu1, Ke Yang1, Jun Gu2, Yunjian Huang1, Jingbo Zhang1, Zhiren Zhang3, Bo Zhang1, Jinghong Zhao4.   

Abstract

Medial arterial calcification associated with hyperphosphatemia is a main cause of cardiovascular mortality in patients with chronic kidney disease (CKD), but the mechanisms underlying high phosphate-induced vascular calcification remain largely unknown. Here, we observed a significant decrease in the expression of peroxisome proliferator-activated receptor-gamma (PPARγ) in calcified arteries both in CKD patients and in a mouse model of CKD with hyperphosphatemia. In vitro, high phosphate treatment led to a decreased expression of PPARγ in mouse vascular smooth muscle cells (VMSCs), accompanied by apparent osteogenic differentiation and calcification. Pretreatment with PPARγ agonist rosiglitazone significantly reversed high phosphate-induced VSMCs calcification. Further investigation showed that methyl-CpG binding protein 2 (Mecp2)-mediated epigenetic repression was involved in high phosphate-induced PPARγ downregulation. Moreover, the expression of Klotho that has the ability to inhibit vascular calcification by regulating phosphate uptake decreased with the PPARγ reduction in VSMCs after high phosphate treatment, and rosiglitazone failed to inhibit high phosphate-induced calcification in VSMCs with knockdown of Klotho or in aortic rings from Klotho-deficient (kl/kl) mice. Finally, an in vivo study demonstrated that oral administration of rosiglitazone could increase Klotho expression and protect against high phosphate-induced vascular calcification in CKD mice. These findings suggest that the inhibition of PPARγ expression may contribute to the pathogenesis of high phosphate-induced vascular calcification, which may provide a new therapeutic target for vascular calcification in CKD patients.
Copyright © 2017 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  Chronic kidney disease; High phosphate; Osteogenic differentiation; PPARγ; Vascular calcification

Mesh:

Substances:

Year:  2017        PMID: 29197521     DOI: 10.1016/j.yjmcc.2017.11.021

Source DB:  PubMed          Journal:  J Mol Cell Cardiol        ISSN: 0022-2828            Impact factor:   5.000


  15 in total

1.  Effects of oral activated charcoal on hyperphosphatemia and vascular calcification in Chinese patients with stage 3-4 chronic kidney disease.

Authors:  Ying Gao; Guiyun Wang; Yang Li; Chenxiao Lv; Zunsong Wang
Journal:  J Nephrol       Date:  2018-12-26       Impact factor: 3.902

2.  Salusin-β Promotes Vascular Calcification via Nicotinamide Adenine Dinucleotide Phosphate/Reactive Oxygen Species-Mediated Klotho Downregulation.

Authors:  Haijian Sun; Feng Zhang; Yu Xu; Shuo Sun; Huiping Wang; Qiong Du; Chenxin Gu; Stephen M Black; Ying Han; Haiyang Tang
Journal:  Antioxid Redox Signal       Date:  2019-12-20       Impact factor: 8.401

Review 3.  Phosphate Is a Cardiovascular Toxin.

Authors:  Maren Leifheit-Nestler; Isabel Vogt; Dieter Haffner; Beatrice Richter
Journal:  Adv Exp Med Biol       Date:  2022       Impact factor: 2.622

4.  Klotho Upregulation via PPARγ Contributes to the Induction of Brain Ischemic Tolerance by Cerebral Ischemic Preconditioning in Rats.

Authors:  Ling-Yan Zhang; Xi-Yun Liu; A-Chou Su; Yu-Yan Hu; Jing-Ge Zhang; Xiao-Hui Xian; Wen-Bin Li; Min Zhang
Journal:  Cell Mol Neurobiol       Date:  2022-07-28       Impact factor: 4.231

Review 5.  Epigenetic modifications of Klotho expression in kidney diseases.

Authors:  Jinkun Xia; Wangsen Cao
Journal:  J Mol Med (Berl)       Date:  2021-02-06       Impact factor: 4.599

Review 6.  The Protective Role of Klotho in CKD-Associated Cardiovascular Disease.

Authors:  Xianjin Bi; Ke Yang; Bo Zhang; Jinghong Zhao
Journal:  Kidney Dis (Basel)       Date:  2020-08-19

Review 7.  The Epigenetic Landscape of Vascular Calcification: An Integrative Perspective.

Authors:  Yi-Chou Hou; Chien-Lin Lu; Tzu-Hang Yuan; Min-Tser Liao; Chia-Ter Chao; Kuo-Cheng Lu
Journal:  Int J Mol Sci       Date:  2020-02-01       Impact factor: 5.923

Review 8.  FGF23 and Phosphate-Cardiovascular Toxins in CKD.

Authors:  Isabel Vogt; Dieter Haffner; Maren Leifheit-Nestler
Journal:  Toxins (Basel)       Date:  2019-11-06       Impact factor: 4.546

Review 9.  PPARγ and Its Agonists in Chronic Kidney Disease.

Authors:  Yuhua Ma; Manman Shi; Yuxin Wang; Jian Liu
Journal:  Int J Nephrol       Date:  2020-02-25

Review 10.  Current Evidence and Future Perspectives on Pharmacological Treatment of Calcific Aortic Valve Stenosis.

Authors:  Maristella Donato; Nicola Ferri; Maria Giovanna Lupo; Elisabetta Faggin; Marcello Rattazzi
Journal:  Int J Mol Sci       Date:  2020-11-04       Impact factor: 5.923

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