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Published on: November 7, 2017
Indoxyl-Sulfate-Induced Redox Imbalance in Chronic Kidney Disease
Chien-Lin Lu1,2, Cai-Mei Zheng3,4,5, Kuo-Cheng Lu6
1Division of Nephrology, Department of Medicine, Fu Jen Catholic University Hospital, New Taipei 24352, Taiwan.
Abstract:
The accumulation of the uremic toxin indoxyl sulfate (IS) induces target organ damage in chronic kidney disease (CKD) patients, and causes complications including cardiovascular diseases, renal osteodystrophy, muscle wasting, and anemia. IS stimulates reactive oxygen species (ROS) production in CKD, which impairs glomerular filtration by a direct cytotoxic effect on the mesangial cells. IS further reduces antioxidant capacity in renal proximal tubular cells and contributes to tubulointerstitial injury. IS-induced ROS formation triggers the switching of vascular smooth muscular cells to the osteoblastic phenotype, which induces cardiovascular risk. Low-turnover bone disease seen in early CKD relies on the inhibitory effects of IS on osteoblast viability and differentiation, and osteoblastic signaling via the parathyroid hormone. Excessive ROS and inflammatory cytokine releases caused by IS directly inhibit myocyte growth in muscle wasting via myokines' effects. Moreover, IS triggers eryptosis via ROS-mediated oxidative stress, and elevates hepcidin levels in order to prevent iron flux in circulation in renal anemia. Thus, IS-induced oxidative stress underlies the mechanisms in CKD-related complications. This review summarizes the underlying mechanisms of how IS mediates oxidative stress in the pathogenesis of CKD's complications. Furthermore, we also discuss the potential role of oral AST-120 in attenuating IS-mediated oxidative stress after gastrointestinal adsorption of the IS precursor indole.
Insights
Uremic toxin indoxyl sulfate (IS) drives chronic kidney disease (CKD) complications through oxidative stress. AST-120 may mitigate IS-induced damage by adsorbing its precursor.
Area of Science:
- Nephrology
- Toxicology
- Oxidative Stress Research
Background:
- Chronic kidney disease (CKD) is associated with the accumulation of uremic toxins.
- Indoxyl sulfate (IS) is a key uremic toxin implicated in CKD pathogenesis and complications.
Purpose of the Study:
- To review the mechanisms by which IS induces oxidative stress in CKD.
- To explore the role of IS in various CKD-related complications.
- To discuss AST-120 as a potential therapeutic agent.
Main Methods:
- Literature review focusing on IS, oxidative stress, and CKD.
- Analysis of IS's impact on cellular processes and organ systems.
- Discussion of AST-120's mechanism of action.
Main Results:
- IS stimulates reactive oxygen species (ROS) production, impairing glomerular filtration and causing tubulointerstitial injury.
- IS contributes to cardiovascular disease, renal osteodystrophy, muscle wasting, and anemia.
- IS-induced oxidative stress is a central mechanism in CKD complications.
Conclusions:
- IS-induced oxidative stress is a significant driver of CKD complications.
- Targeting IS, potentially with AST-120, offers a therapeutic strategy for CKD management.
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