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Static Magnetic Fields Protect against Cisplatin-Induced Kidney Toxicity

Cisplatin is one of the most widely used anti-cancer drugs that can effectively inhibit the growth of multiple types of cancer. However, its clinical application is limited by its severe side effects, especially kidney toxicity, caused by cisplatin-induced oxidative stress, inflammation and kidney c...

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Autores principales: Yu, Xin, Ji, Xinmiao, Fan, Yixiang, Yu, Biao, Wang, Xinyu, Feng, Chuanlin, Zhang, Lei, Song, Chao, Zhang, Xin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9854588/
https://www.ncbi.nlm.nih.gov/pubmed/36670933
http://dx.doi.org/10.3390/antiox12010073
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author Yu, Xin
Ji, Xinmiao
Fan, Yixiang
Yu, Biao
Wang, Xinyu
Feng, Chuanlin
Zhang, Lei
Song, Chao
Zhang, Xin
author_facet Yu, Xin
Ji, Xinmiao
Fan, Yixiang
Yu, Biao
Wang, Xinyu
Feng, Chuanlin
Zhang, Lei
Song, Chao
Zhang, Xin
author_sort Yu, Xin
collection PubMed
description Cisplatin is one of the most widely used anti-cancer drugs that can effectively inhibit the growth of multiple types of cancer. However, its clinical application is limited by its severe side effects, especially kidney toxicity, caused by cisplatin-induced oxidative stress, inflammation and kidney cell apoptosis. Here, we found that moderate (a few hundred mT) quasi-uniform static magnetic fields (SMFs) could inhibit cisplatin-induced renal proximal tubular cell death, especially the vertically downward direction SMF. RNA-seq experiments demonstrate that SMFs induced differential gene expressions that are closely associated with oxidative stress, apoptosis, cytokine production, transmembrane transport and DNA repair. In vivo experiments show that SMFs can reduce cisplatin-induced kidney injury in cisplatin-administrated tumor-bearing mice by reducing oxidative stress, inflammation and cell apoptosis. Furthermore, high-dose cisplatin-induced acute nephrotoxicity can be effectively alleviated by SMF treatment of as little as one day, which significantly reduced the reactive oxygen species levels in kidneys and prolonged the mice’s survival. Moreover, the concentration of cisplatin in the kidney was significantly attenuated in SMF-treated mice. Therefore, our study demonstrates the effects of moderate SMFs as a novel physical method to reduce oxidative stress, and revealed their future potential to be used against cisplatin-induced kidney toxicity in cancer treatment.
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spelling pubmed-98545882023-01-21 Static Magnetic Fields Protect against Cisplatin-Induced Kidney Toxicity Yu, Xin Ji, Xinmiao Fan, Yixiang Yu, Biao Wang, Xinyu Feng, Chuanlin Zhang, Lei Song, Chao Zhang, Xin Antioxidants (Basel) Article Cisplatin is one of the most widely used anti-cancer drugs that can effectively inhibit the growth of multiple types of cancer. However, its clinical application is limited by its severe side effects, especially kidney toxicity, caused by cisplatin-induced oxidative stress, inflammation and kidney cell apoptosis. Here, we found that moderate (a few hundred mT) quasi-uniform static magnetic fields (SMFs) could inhibit cisplatin-induced renal proximal tubular cell death, especially the vertically downward direction SMF. RNA-seq experiments demonstrate that SMFs induced differential gene expressions that are closely associated with oxidative stress, apoptosis, cytokine production, transmembrane transport and DNA repair. In vivo experiments show that SMFs can reduce cisplatin-induced kidney injury in cisplatin-administrated tumor-bearing mice by reducing oxidative stress, inflammation and cell apoptosis. Furthermore, high-dose cisplatin-induced acute nephrotoxicity can be effectively alleviated by SMF treatment of as little as one day, which significantly reduced the reactive oxygen species levels in kidneys and prolonged the mice’s survival. Moreover, the concentration of cisplatin in the kidney was significantly attenuated in SMF-treated mice. Therefore, our study demonstrates the effects of moderate SMFs as a novel physical method to reduce oxidative stress, and revealed their future potential to be used against cisplatin-induced kidney toxicity in cancer treatment. MDPI 2022-12-29 /pmc/articles/PMC9854588/ /pubmed/36670933 http://dx.doi.org/10.3390/antiox12010073 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Yu, Xin
Ji, Xinmiao
Fan, Yixiang
Yu, Biao
Wang, Xinyu
Feng, Chuanlin
Zhang, Lei
Song, Chao
Zhang, Xin
Static Magnetic Fields Protect against Cisplatin-Induced Kidney Toxicity
title Static Magnetic Fields Protect against Cisplatin-Induced Kidney Toxicity
title_full Static Magnetic Fields Protect against Cisplatin-Induced Kidney Toxicity
title_fullStr Static Magnetic Fields Protect against Cisplatin-Induced Kidney Toxicity
title_full_unstemmed Static Magnetic Fields Protect against Cisplatin-Induced Kidney Toxicity
title_short Static Magnetic Fields Protect against Cisplatin-Induced Kidney Toxicity
title_sort static magnetic fields protect against cisplatin-induced kidney toxicity
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9854588/
https://www.ncbi.nlm.nih.gov/pubmed/36670933
http://dx.doi.org/10.3390/antiox12010073
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