Cargando…

Meclofenamic Acid Reduces Reactive Oxygen Species Accumulation and Apoptosis, Inhibits Excessive Autophagy, and Protects Hair Cell-Like HEI-OC1 Cells From Cisplatin-Induced Damage

Hearing loss is the most common sensory disorder in humans, and a significant number of cases is due to the ototoxicity of drugs such as cisplatin that cause hair cell (HC) damage. Thus, there is great interest in finding agents and mechanisms that protect HCs from ototoxic drug damage. It has been...

Descripción completa

Detalles Bibliográficos
Autores principales: Li, He, Song, Yongdong, He, Zuhong, Chen, Xiaoyun, Wu, Xianmin, Li, Xiaofei, Bai, Xiaohui, Liu, Wenwen, Li, Boqin, Wang, Shanshan, Han, Yuechen, Xu, Lei, Zhang, Daogong, Li, Jianfeng, Chai, Renjie, Wang, Haibo, Fan, Zhaomin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5974247/
https://www.ncbi.nlm.nih.gov/pubmed/29875633
http://dx.doi.org/10.3389/fncel.2018.00139
_version_ 1783326781250469888
author Li, He
Song, Yongdong
He, Zuhong
Chen, Xiaoyun
Wu, Xianmin
Li, Xiaofei
Bai, Xiaohui
Liu, Wenwen
Li, Boqin
Wang, Shanshan
Han, Yuechen
Xu, Lei
Zhang, Daogong
Li, Jianfeng
Chai, Renjie
Wang, Haibo
Fan, Zhaomin
author_facet Li, He
Song, Yongdong
He, Zuhong
Chen, Xiaoyun
Wu, Xianmin
Li, Xiaofei
Bai, Xiaohui
Liu, Wenwen
Li, Boqin
Wang, Shanshan
Han, Yuechen
Xu, Lei
Zhang, Daogong
Li, Jianfeng
Chai, Renjie
Wang, Haibo
Fan, Zhaomin
author_sort Li, He
collection PubMed
description Hearing loss is the most common sensory disorder in humans, and a significant number of cases is due to the ototoxicity of drugs such as cisplatin that cause hair cell (HC) damage. Thus, there is great interest in finding agents and mechanisms that protect HCs from ototoxic drug damage. It has been proposed that epigenetic modifications are related to inner ear development and play a significant role in HC protection and HC regeneration; however, whether the m(6)A modification and the ethyl ester form of meclofenamic acid (MA2), which is a highly selective inhibitor of FTO (fatmass and obesity-associated enzyme, one of the primary human demethylases), can affect the process of HC apoptosis induced by ototoxic drugs remains largely unexplored. In this study, we took advantage of the HEI-OC1 cell line, which is a cochlear HC-like cell line, to investigate the role of epigenetic modifications in cisplatin-induced cell death. We found that cisplatin injury caused reactive oxygen species accumulation and increased apoptosis in HEI-OC1 cells, and the cisplatin injury was reduced by co-treatment with MA2 compared to the cisplatin-only group. Further investigation showed that MA2 attenuated cisplatin-induced oxidative stress and apoptosis in HEI-OC1 cells. We next found that the cisplatin-induced upregulation of autophagy was significantly inhibited after MA2 treatment, indicating that MA2 inhibited the cisplatin-induced excessive autophagy. Our findings show that MA2 has a protective effect and improves the viability of HEI-OC1 cells after cisplatin treatment, and they provide new insights into potential therapeutic targets for the amelioration of cisplatin-induced ototoxicity.
format Online
Article
Text
id pubmed-5974247
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-59742472018-06-06 Meclofenamic Acid Reduces Reactive Oxygen Species Accumulation and Apoptosis, Inhibits Excessive Autophagy, and Protects Hair Cell-Like HEI-OC1 Cells From Cisplatin-Induced Damage Li, He Song, Yongdong He, Zuhong Chen, Xiaoyun Wu, Xianmin Li, Xiaofei Bai, Xiaohui Liu, Wenwen Li, Boqin Wang, Shanshan Han, Yuechen Xu, Lei Zhang, Daogong Li, Jianfeng Chai, Renjie Wang, Haibo Fan, Zhaomin Front Cell Neurosci Neuroscience Hearing loss is the most common sensory disorder in humans, and a significant number of cases is due to the ototoxicity of drugs such as cisplatin that cause hair cell (HC) damage. Thus, there is great interest in finding agents and mechanisms that protect HCs from ototoxic drug damage. It has been proposed that epigenetic modifications are related to inner ear development and play a significant role in HC protection and HC regeneration; however, whether the m(6)A modification and the ethyl ester form of meclofenamic acid (MA2), which is a highly selective inhibitor of FTO (fatmass and obesity-associated enzyme, one of the primary human demethylases), can affect the process of HC apoptosis induced by ototoxic drugs remains largely unexplored. In this study, we took advantage of the HEI-OC1 cell line, which is a cochlear HC-like cell line, to investigate the role of epigenetic modifications in cisplatin-induced cell death. We found that cisplatin injury caused reactive oxygen species accumulation and increased apoptosis in HEI-OC1 cells, and the cisplatin injury was reduced by co-treatment with MA2 compared to the cisplatin-only group. Further investigation showed that MA2 attenuated cisplatin-induced oxidative stress and apoptosis in HEI-OC1 cells. We next found that the cisplatin-induced upregulation of autophagy was significantly inhibited after MA2 treatment, indicating that MA2 inhibited the cisplatin-induced excessive autophagy. Our findings show that MA2 has a protective effect and improves the viability of HEI-OC1 cells after cisplatin treatment, and they provide new insights into potential therapeutic targets for the amelioration of cisplatin-induced ototoxicity. Frontiers Media S.A. 2018-05-23 /pmc/articles/PMC5974247/ /pubmed/29875633 http://dx.doi.org/10.3389/fncel.2018.00139 Text en Copyright © 2018 Li, Song, He, Chen, Wu, Li, Bai, Liu, Li, Wang, Han, Xu, Zhang, Li, Chai, Wang and Fan. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Neuroscience
Li, He
Song, Yongdong
He, Zuhong
Chen, Xiaoyun
Wu, Xianmin
Li, Xiaofei
Bai, Xiaohui
Liu, Wenwen
Li, Boqin
Wang, Shanshan
Han, Yuechen
Xu, Lei
Zhang, Daogong
Li, Jianfeng
Chai, Renjie
Wang, Haibo
Fan, Zhaomin
Meclofenamic Acid Reduces Reactive Oxygen Species Accumulation and Apoptosis, Inhibits Excessive Autophagy, and Protects Hair Cell-Like HEI-OC1 Cells From Cisplatin-Induced Damage
title Meclofenamic Acid Reduces Reactive Oxygen Species Accumulation and Apoptosis, Inhibits Excessive Autophagy, and Protects Hair Cell-Like HEI-OC1 Cells From Cisplatin-Induced Damage
title_full Meclofenamic Acid Reduces Reactive Oxygen Species Accumulation and Apoptosis, Inhibits Excessive Autophagy, and Protects Hair Cell-Like HEI-OC1 Cells From Cisplatin-Induced Damage
title_fullStr Meclofenamic Acid Reduces Reactive Oxygen Species Accumulation and Apoptosis, Inhibits Excessive Autophagy, and Protects Hair Cell-Like HEI-OC1 Cells From Cisplatin-Induced Damage
title_full_unstemmed Meclofenamic Acid Reduces Reactive Oxygen Species Accumulation and Apoptosis, Inhibits Excessive Autophagy, and Protects Hair Cell-Like HEI-OC1 Cells From Cisplatin-Induced Damage
title_short Meclofenamic Acid Reduces Reactive Oxygen Species Accumulation and Apoptosis, Inhibits Excessive Autophagy, and Protects Hair Cell-Like HEI-OC1 Cells From Cisplatin-Induced Damage
title_sort meclofenamic acid reduces reactive oxygen species accumulation and apoptosis, inhibits excessive autophagy, and protects hair cell-like hei-oc1 cells from cisplatin-induced damage
topic Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5974247/
https://www.ncbi.nlm.nih.gov/pubmed/29875633
http://dx.doi.org/10.3389/fncel.2018.00139
work_keys_str_mv AT lihe meclofenamicacidreducesreactiveoxygenspeciesaccumulationandapoptosisinhibitsexcessiveautophagyandprotectshaircelllikeheioc1cellsfromcisplatininduceddamage
AT songyongdong meclofenamicacidreducesreactiveoxygenspeciesaccumulationandapoptosisinhibitsexcessiveautophagyandprotectshaircelllikeheioc1cellsfromcisplatininduceddamage
AT hezuhong meclofenamicacidreducesreactiveoxygenspeciesaccumulationandapoptosisinhibitsexcessiveautophagyandprotectshaircelllikeheioc1cellsfromcisplatininduceddamage
AT chenxiaoyun meclofenamicacidreducesreactiveoxygenspeciesaccumulationandapoptosisinhibitsexcessiveautophagyandprotectshaircelllikeheioc1cellsfromcisplatininduceddamage
AT wuxianmin meclofenamicacidreducesreactiveoxygenspeciesaccumulationandapoptosisinhibitsexcessiveautophagyandprotectshaircelllikeheioc1cellsfromcisplatininduceddamage
AT lixiaofei meclofenamicacidreducesreactiveoxygenspeciesaccumulationandapoptosisinhibitsexcessiveautophagyandprotectshaircelllikeheioc1cellsfromcisplatininduceddamage
AT baixiaohui meclofenamicacidreducesreactiveoxygenspeciesaccumulationandapoptosisinhibitsexcessiveautophagyandprotectshaircelllikeheioc1cellsfromcisplatininduceddamage
AT liuwenwen meclofenamicacidreducesreactiveoxygenspeciesaccumulationandapoptosisinhibitsexcessiveautophagyandprotectshaircelllikeheioc1cellsfromcisplatininduceddamage
AT liboqin meclofenamicacidreducesreactiveoxygenspeciesaccumulationandapoptosisinhibitsexcessiveautophagyandprotectshaircelllikeheioc1cellsfromcisplatininduceddamage
AT wangshanshan meclofenamicacidreducesreactiveoxygenspeciesaccumulationandapoptosisinhibitsexcessiveautophagyandprotectshaircelllikeheioc1cellsfromcisplatininduceddamage
AT hanyuechen meclofenamicacidreducesreactiveoxygenspeciesaccumulationandapoptosisinhibitsexcessiveautophagyandprotectshaircelllikeheioc1cellsfromcisplatininduceddamage
AT xulei meclofenamicacidreducesreactiveoxygenspeciesaccumulationandapoptosisinhibitsexcessiveautophagyandprotectshaircelllikeheioc1cellsfromcisplatininduceddamage
AT zhangdaogong meclofenamicacidreducesreactiveoxygenspeciesaccumulationandapoptosisinhibitsexcessiveautophagyandprotectshaircelllikeheioc1cellsfromcisplatininduceddamage
AT lijianfeng meclofenamicacidreducesreactiveoxygenspeciesaccumulationandapoptosisinhibitsexcessiveautophagyandprotectshaircelllikeheioc1cellsfromcisplatininduceddamage
AT chairenjie meclofenamicacidreducesreactiveoxygenspeciesaccumulationandapoptosisinhibitsexcessiveautophagyandprotectshaircelllikeheioc1cellsfromcisplatininduceddamage
AT wanghaibo meclofenamicacidreducesreactiveoxygenspeciesaccumulationandapoptosisinhibitsexcessiveautophagyandprotectshaircelllikeheioc1cellsfromcisplatininduceddamage
AT fanzhaomin meclofenamicacidreducesreactiveoxygenspeciesaccumulationandapoptosisinhibitsexcessiveautophagyandprotectshaircelllikeheioc1cellsfromcisplatininduceddamage