Coenzyme Q(10) alleviates tacrolimus-induced mitochondrial dysfunction in kidney

Authors
Yu, Ji HyunLim, Sun WooLuo, KangCui, ShengQuan, YiShin, Yoo JinLee, Kyung EunKim, Hong LimKo, Eun JeongChung, Byung HaKim, Ju HwanChung, Sang J.Yang, Chul Woo
Issue Date
2019-11
Publisher
FEDERATION AMER SOC EXP BIOL
Citation
FASEB JOURNAL, v.33, no.11, pp.12288 - 12298
Abstract
The major side effect of tacrolimus (Tac) is nephrotoxicity. We studied whether supplementation of coenzyme Q(10), (CoQ(10)) a potent antioxidant, can reduce Tac-induced nephrotoxicity via improving mitochondrial function. In an in vitro study, CoQ(10) reduced the production of Tac-induced mitochondrial reactive oxygen species and abolished the loss of mitochondrial membrane potential in proximal tubular cell line. Assessment of mitochondrial function revealed that CoQ(10) decreased oxygen consumption and mitochondrial respiration rate increased by Tac, suggesting improvement of mitochondrial function to synthesize ATP with CoQ(10) treatment. The effect of the CoQ(10) in vitro study was observed in an experimental model of chronic Tac-induced nephropathy. CoQ(10) attenuated Tac-induced oxidative stress and was accompanied by function and histologic improvement. On electron microscopy, addition of CoQ(10) increased not only the number but also the volume of mitochondria compared with Tac treatment only. Our data indicate that CoQ(10) improves Tac-induced mitochondrial dysfunction in kidney. Supplementary CoQ(10) treatment may be a promising approach to reduce Tac-induced nephrotoxicity.
Keywords
CHRONIC CYCLOSPORINE NEPHROPATHY; ASCORBIC-ACID PALMITATE; OXIDATIVE STRESS; FK506 NEPHROTOXICITY; EXPERIMENTAL-MODEL; BETA-CAROTENE; REDUCED FORM; VITAMIN-E; TROLOX-C; ACETYLCYSTEINE; CHRONIC CYCLOSPORINE NEPHROPATHY; ASCORBIC-ACID PALMITATE; OXIDATIVE STRESS; FK506 NEPHROTOXICITY; EXPERIMENTAL-MODEL; BETA-CAROTENE; REDUCED FORM; VITAMIN-E; TROLOX-C; ACETYLCYSTEINE; 3D reconstruction; nephrotoxicity; reactive oxygen species
ISSN
0892-6638
URI
https://pubs.kist.re.kr/handle/201004/119380
DOI
10.1096/fj.201900386RR
Appears in Collections:
KIST Article > 2019
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