Effect of High Glucose on Peritoneal Mesothelial Cell Biology

Author:

Ha Hunjoo1,Lee Hi Bahl2

Affiliation:

1. Department of Pharmacology, Soon Chun Hyang University, Seoul, Korea

2. Yonsei University College of Medicine and Hyonam Kidney Laboratory, Soon Chun Hyang University, Seoul, Korea

Abstract

Objective This study reviews evidence that implicates high glucose (HG) in the pathogenesis of peritoneal fibrosis and proposes mechanisms potentially involved in the HG-induced peritoneal fibrosis that is observed in long-term peritoneal dialysis (PD) patients. Design Selected Western literature is reviewed, examining the effect of HG on rat or human peritoneal mesothelial cell (HPMC) biology with particular reference to extracellular matrix (ECM) gene expression and protein synthesis. Results HG up-regulated the expression of monocyte chemotactic peptide–1 (MCP-1), transforming growth factor beta 1 (TGFβ1), and fibronectin messenger RNAs (mRNAs) and proteins. These HG-induced up-regulations were effectively blocked by the inhibition of protein kinase C (PKC). In addition, cytosolic reactive oxygen species (ROS) rapidly increased in HPMC cultured under HG, and treatment with antioxidant effectively inhibited HG-induced fibronectin protein synthesis by HPMC. Conclusion Continuous exposure of the peritoneal membrane to HG may induce changes in HPMC biology, leading to excessive deposition of ECM and peritoneal injury. HG-induced activation of diacylglycerol PKC (DAG–PKC) plays a major role in up-regulation of MCP-1, TGFβ1, and fibronectin synthesis by HPMC cultured under HG. In addition, ROS, recently recognized as signalling molecules, are rapidly generated in HPMC as a result of increased glucose metabolism and may prove to be an important mediator of HG-induced peritoneal injury.

Publisher

SAGE Publications

Subject

Nephrology,General Medicine

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2. Relationship between number of daily exchanges at CAPD start with clinical outcomes;Peritoneal Dialysis International: Journal of the International Society for Peritoneal Dialysis;2023-12-19

3. Effect of Glucose on Water Transport in Rat Peritoneal Mesothelial Cells;Journal of Evolutionary Biochemistry and Physiology;2023-03

4. Effect of Glucose on Water Transport in Rat Peritoneal Mesothelium Cells;Российский физиологический журнал им  И  М  Сеченова;2023-03-01

5. Oxidative Stress-Induced Alterations of Cellular Localization and Expression of Aquaporin 1 Lead to Defected Water Transport upon Peritoneal Fibrosis;Biomedicines;2022-03-30

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