Literature DB >> 25878055

AST-120 ameliorates lowered exercise capacity and mitochondrial biogenesis in the skeletal muscle from mice with chronic kidney disease via reducing oxidative stress.

Mikito Nishikawa1, Naoki Ishimori1, Shingo Takada1, Akimichi Saito1, Tomoyasu Kadoguchi1, Takaaki Furihata1, Arata Fukushima1, Shouji Matsushima1, Takashi Yokota1, Shintaro Kinugawa1, Hiroyuki Tsutsui1.   

Abstract

BACKGROUND: Exercise capacity and quality of life are markedly impaired in chronic kidney disease (CKD). Increased plasma uremic toxins such as indoxyl sulfate (IS), which induce oxidative stress, may be involved in this process. An oral adsorbent, AST-120, can reduce circulating IS, however, its effects on skeletal muscle and exercise capacity have not been investigated in CKD.
METHODS: Subtotal-nephrectomy or sham operation was performed in 8-week-old C57BL/6J mice. They were divided into two groups with or without 8% (w/w) of AST-120 in standard diet for 20 weeks. Sham, Sham + AST-120, CKD and CKD + AST-120 (n = 12, each group) were studied. We also conducted a C2C12 cell culture study to determine the direct effects of IS on oxidative stress.
RESULTS: Plasma IS levels were significantly increased in CKD compared with Sham (1.05 ± 0.11 versus 0.21 ± 0.03 mg/dL, P <0.05), which was significantly ameliorated in CKD + AST-120 (0.41 ± 0.06 mg/dL). The running distance to exhaustion determined by treadmill tests was significantly reduced in CKD compared with Sham (267 ± 17 versus 427 ± 36 m, P <0.05), and this reduction was also significantly ameliorated in CKD + AST-120 (407 ± 38 m) without altering skeletal muscle weight. Citrate synthase activity and mitochondrial biogenesis gene were downregulated, and superoxide production was significantly increased in the skeletal muscle from CKD, and these changes were normalized in CKD + AST-120. Incubation of C2C12 cells with IS significantly increased NAD(P)H oxidase activity.
CONCLUSIONS: The administration of AST-120 improved exercise capacity and mitochondrial biogenesis of skeletal muscle via reducing oxidative stress. AST-120 may be a novel therapeutic agent against exercise intolerance in CKD.
© The Author 2015. Published by Oxford University Press on behalf of ERA-EDTA. All rights reserved.

Entities:  

Keywords:  AST-120; chronic kidney disease; exercise capacity; indoxyl sulfate; mitochondria; skeletal muscle

Mesh:

Substances:

Year:  2015        PMID: 25878055     DOI: 10.1093/ndt/gfv103

Source DB:  PubMed          Journal:  Nephrol Dial Transplant        ISSN: 0931-0509            Impact factor:   5.992


  24 in total

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Review 4.  Exercise intolerance in kidney diseases: physiological contributors and therapeutic strategies.

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7.  Skeletal Muscle Regeneration and Oxidative Stress Are Altered in Chronic Kidney Disease.

Authors:  Keith G Avin; Neal X Chen; Jason M Organ; Chad Zarse; Kalisha O'Neill; Richard G Conway; Robert J Konrad; Robert L Bacallao; Matthew R Allen; Sharon M Moe
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8.  Skeletal myopathy in CKD: a comparison of adenine-induced nephropathy and 5/6 nephrectomy models in mice.

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Journal:  Am J Physiol Renal Physiol       Date:  2021-06-14

Review 9.  The molecular mechanisms of hemodialysis vascular access failure.

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Journal:  Kidney Int       Date:  2016-02       Impact factor: 10.612

10.  Sesamin prevents decline in exercise capacity and impairment of skeletal muscle mitochondrial function in mice with high-fat diet-induced diabetes.

Authors:  Shingo Takada; Shintaro Kinugawa; Shouji Matsushima; Daisuke Takemoto; Takaaki Furihata; Wataru Mizushima; Arata Fukushima; Takashi Yokota; Yoshiko Ono; Hiroshi Shibata; Koichi Okita; Hiroyuki Tsutsui
Journal:  Exp Physiol       Date:  2015-10-01       Impact factor: 2.969

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