Ameliorative role of SIRT1 in peritoneal fibrosis: an in vivo and in vitro study

Abstract Background Peritoneal fibrosis is one of the major complications induced by peritoneal dialysis (PD). Damaged integrity and function of peritoneum caused by peritoneal fibrosis not only limits the curative efficacy of PD and but affects the prognosis of patients. However, the detailed mecha...

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Main Authors: Yanhong Guo, Liuwei Wang, Rong Gou, Yulin Wang, Xiujie Shi, Yage Zhang, Xinxin Pang, Lin Tang
Format: Article
Language:English
Published: BMC 2021-04-01
Series:Cell & Bioscience
Subjects:
Online Access:https://doi.org/10.1186/s13578-021-00591-8
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spelling doaj-d3e283d67b0b4d69a3d95a467ad886992021-05-02T11:44:32ZengBMCCell & Bioscience2045-37012021-04-0111111110.1186/s13578-021-00591-8Ameliorative role of SIRT1 in peritoneal fibrosis: an in vivo and in vitro studyYanhong Guo0Liuwei Wang1Rong Gou2Yulin Wang3Xiujie Shi4Yage Zhang5Xinxin Pang6Lin Tang7Department of Nephropathy, The First Affiliated Hospital of Zhengzhou UniversityDepartment of Nephropathy, The First Affiliated Hospital of Zhengzhou UniversityDepartment of Nephropathy, The First Affiliated Hospital of Zhengzhou UniversityDepartment of Nephropathy, The First Affiliated Hospital of Zhengzhou UniversityDepartment of Nephropathy, Henan Provincial Hospital of Traditional Chinese Medicine (The Second Hospital Affiliated to Henan University of Chinese Medicine)Department of Nephropathy, Henan Provincial Hospital of Traditional Chinese Medicine (The Second Hospital Affiliated to Henan University of Chinese Medicine)Department of Nephropathy, Henan Provincial Hospital of Traditional Chinese Medicine (The Second Hospital Affiliated to Henan University of Chinese Medicine)Department of Nephropathy, The First Affiliated Hospital of Zhengzhou UniversityAbstract Background Peritoneal fibrosis is one of the major complications induced by peritoneal dialysis (PD). Damaged integrity and function of peritoneum caused by peritoneal fibrosis not only limits the curative efficacy of PD and but affects the prognosis of patients. However, the detailed mechanisms underlying the process remain unclear and therapeutic strategy targeting TGF‐β is deficient. Transforming growth factor‐β (TGF‐β) signaling participates in the progression of peritoneal fibrosis through enhancing mesothelial-mesenchymal transition of mesothelial cells. Methods The study aims to demonstrate the regulatory role of Sirtuin1 (SIRT1) to the TGF‐β signaling mediated peritoneal fibrosis. SIRT1−/− mice were used to establish animal model. Masson’s staining and peritoneal equilibration assay were performed to evaluate the degree of peritoneal fibrosis. QRT-PCR assays were used to estimate the RNA levels of Sirt1 and matrix genes related to peritoneal fibrosis, and their protein levels were examined by Western blot assays. Results SIRT1 significantly decreased in vivo post PD treatment. SIRT1 knockout exacerbated peritoneal fibrosis both in vivo and vitro. Overexpression of SIRT1 efficiently inhibited peritoneal fibrosis by inhibiting the peritoneal inflammation and the activation of TGF‐β signaling. Conclusion SIRT1 ameliorated peritoneal fibrosis both in vivo and in vitro through inhibiting the expression of protein matrix induced by TGF‐β signaling.https://doi.org/10.1186/s13578-021-00591-8Peritoneal fibrosisPeritoneumSIRT1TGF‐βMesothelial-mesenchymal transition
collection DOAJ
language English
format Article
sources DOAJ
author Yanhong Guo
Liuwei Wang
Rong Gou
Yulin Wang
Xiujie Shi
Yage Zhang
Xinxin Pang
Lin Tang
spellingShingle Yanhong Guo
Liuwei Wang
Rong Gou
Yulin Wang
Xiujie Shi
Yage Zhang
Xinxin Pang
Lin Tang
Ameliorative role of SIRT1 in peritoneal fibrosis: an in vivo and in vitro study
Cell & Bioscience
Peritoneal fibrosis
Peritoneum
SIRT1
TGF‐β
Mesothelial-mesenchymal transition
author_facet Yanhong Guo
Liuwei Wang
Rong Gou
Yulin Wang
Xiujie Shi
Yage Zhang
Xinxin Pang
Lin Tang
author_sort Yanhong Guo
title Ameliorative role of SIRT1 in peritoneal fibrosis: an in vivo and in vitro study
title_short Ameliorative role of SIRT1 in peritoneal fibrosis: an in vivo and in vitro study
title_full Ameliorative role of SIRT1 in peritoneal fibrosis: an in vivo and in vitro study
title_fullStr Ameliorative role of SIRT1 in peritoneal fibrosis: an in vivo and in vitro study
title_full_unstemmed Ameliorative role of SIRT1 in peritoneal fibrosis: an in vivo and in vitro study
title_sort ameliorative role of sirt1 in peritoneal fibrosis: an in vivo and in vitro study
publisher BMC
series Cell & Bioscience
issn 2045-3701
publishDate 2021-04-01
description Abstract Background Peritoneal fibrosis is one of the major complications induced by peritoneal dialysis (PD). Damaged integrity and function of peritoneum caused by peritoneal fibrosis not only limits the curative efficacy of PD and but affects the prognosis of patients. However, the detailed mechanisms underlying the process remain unclear and therapeutic strategy targeting TGF‐β is deficient. Transforming growth factor‐β (TGF‐β) signaling participates in the progression of peritoneal fibrosis through enhancing mesothelial-mesenchymal transition of mesothelial cells. Methods The study aims to demonstrate the regulatory role of Sirtuin1 (SIRT1) to the TGF‐β signaling mediated peritoneal fibrosis. SIRT1−/− mice were used to establish animal model. Masson’s staining and peritoneal equilibration assay were performed to evaluate the degree of peritoneal fibrosis. QRT-PCR assays were used to estimate the RNA levels of Sirt1 and matrix genes related to peritoneal fibrosis, and their protein levels were examined by Western blot assays. Results SIRT1 significantly decreased in vivo post PD treatment. SIRT1 knockout exacerbated peritoneal fibrosis both in vivo and vitro. Overexpression of SIRT1 efficiently inhibited peritoneal fibrosis by inhibiting the peritoneal inflammation and the activation of TGF‐β signaling. Conclusion SIRT1 ameliorated peritoneal fibrosis both in vivo and in vitro through inhibiting the expression of protein matrix induced by TGF‐β signaling.
topic Peritoneal fibrosis
Peritoneum
SIRT1
TGF‐β
Mesothelial-mesenchymal transition
url https://doi.org/10.1186/s13578-021-00591-8
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