Cargando…

Reduction in mitochondrial oxidative stress mediates hypoxia-induced resistance to cisplatin in human transitional cell carcinoma cells

Tumor hypoxia is known to promote the acquisition of more aggressive phenotypes in human transitional cell carcinoma (TCC), including drug resistance. Accumulating evidence suggests that mitochondria play a central role in the chemoresistance of TCC. However, the role of mitochondria in the hypoxia-...

Descripción completa

Detalles Bibliográficos
Autores principales: Kim, Myung-Chul, Hwang, Sung-Hyun, Yang, Yeseul, Kim, Na-Yon, Kim, Yongbaek
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Neoplasia Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8208898/
https://www.ncbi.nlm.nih.gov/pubmed/34134082
http://dx.doi.org/10.1016/j.neo.2021.05.013
_version_ 1783709015653482496
author Kim, Myung-Chul
Hwang, Sung-Hyun
Yang, Yeseul
Kim, Na-Yon
Kim, Yongbaek
author_facet Kim, Myung-Chul
Hwang, Sung-Hyun
Yang, Yeseul
Kim, Na-Yon
Kim, Yongbaek
author_sort Kim, Myung-Chul
collection PubMed
description Tumor hypoxia is known to promote the acquisition of more aggressive phenotypes in human transitional cell carcinoma (TCC), including drug resistance. Accumulating evidence suggests that mitochondria play a central role in the chemoresistance of TCC. However, the role of mitochondria in the hypoxia-induced drug resistance in TCC remains elusive. The present study investigated the function of mitochondria in the drug resistance using a TCC cell line under hypoxic conditions. In vitro hypoxia (0.1% O(2), 48 h) was achieved by incubating TCC cells in air chamber. Mitochondrial events involving hypoxia-induced drug resistance were assessed. Hypoxia significantly reduced the cisplatin-induced apoptosis of TCC cells. Additionally, hypoxia substantially decreased the level of mitochondrial reactive oxygen species (ROS) generated by cisplatin treatment. Analogously, elimination of mitochondrial ROS significantly rescued cells from cisplatin-induced apoptosis. Hypoxia enhanced mitochondrial hyperpolarization, which was not related to ATP production or the reversal of ATP synthase activity. The mitochondrial DNA (mtDNA) amplification efficiency data illustrated that hypoxia significantly prevented oxidative damage to the mitogenome. Moreover, transmission electron microscopy revealed that cisplatin-induced disruption of the mitochondrial ultrastructure was abated under hypoxic conditions. Notably, depletion of mtDNA by ethidium bromide abrogated hypoxia-induced resistance to cisplatin. Taken together, the present study demonstrated that TCC cells exposed to hypoxic conditions rendered mitochondria less sensitive to oxidative stress induced by cisplatin treatment, leading to enhanced drug resistance.
format Online
Article
Text
id pubmed-8208898
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Neoplasia Press
record_format MEDLINE/PubMed
spelling pubmed-82088982021-06-28 Reduction in mitochondrial oxidative stress mediates hypoxia-induced resistance to cisplatin in human transitional cell carcinoma cells Kim, Myung-Chul Hwang, Sung-Hyun Yang, Yeseul Kim, Na-Yon Kim, Yongbaek Neoplasia Original Research Tumor hypoxia is known to promote the acquisition of more aggressive phenotypes in human transitional cell carcinoma (TCC), including drug resistance. Accumulating evidence suggests that mitochondria play a central role in the chemoresistance of TCC. However, the role of mitochondria in the hypoxia-induced drug resistance in TCC remains elusive. The present study investigated the function of mitochondria in the drug resistance using a TCC cell line under hypoxic conditions. In vitro hypoxia (0.1% O(2), 48 h) was achieved by incubating TCC cells in air chamber. Mitochondrial events involving hypoxia-induced drug resistance were assessed. Hypoxia significantly reduced the cisplatin-induced apoptosis of TCC cells. Additionally, hypoxia substantially decreased the level of mitochondrial reactive oxygen species (ROS) generated by cisplatin treatment. Analogously, elimination of mitochondrial ROS significantly rescued cells from cisplatin-induced apoptosis. Hypoxia enhanced mitochondrial hyperpolarization, which was not related to ATP production or the reversal of ATP synthase activity. The mitochondrial DNA (mtDNA) amplification efficiency data illustrated that hypoxia significantly prevented oxidative damage to the mitogenome. Moreover, transmission electron microscopy revealed that cisplatin-induced disruption of the mitochondrial ultrastructure was abated under hypoxic conditions. Notably, depletion of mtDNA by ethidium bromide abrogated hypoxia-induced resistance to cisplatin. Taken together, the present study demonstrated that TCC cells exposed to hypoxic conditions rendered mitochondria less sensitive to oxidative stress induced by cisplatin treatment, leading to enhanced drug resistance. Neoplasia Press 2021-06-13 /pmc/articles/PMC8208898/ /pubmed/34134082 http://dx.doi.org/10.1016/j.neo.2021.05.013 Text en © 2021 Published by Elsevier Inc. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Research
Kim, Myung-Chul
Hwang, Sung-Hyun
Yang, Yeseul
Kim, Na-Yon
Kim, Yongbaek
Reduction in mitochondrial oxidative stress mediates hypoxia-induced resistance to cisplatin in human transitional cell carcinoma cells
title Reduction in mitochondrial oxidative stress mediates hypoxia-induced resistance to cisplatin in human transitional cell carcinoma cells
title_full Reduction in mitochondrial oxidative stress mediates hypoxia-induced resistance to cisplatin in human transitional cell carcinoma cells
title_fullStr Reduction in mitochondrial oxidative stress mediates hypoxia-induced resistance to cisplatin in human transitional cell carcinoma cells
title_full_unstemmed Reduction in mitochondrial oxidative stress mediates hypoxia-induced resistance to cisplatin in human transitional cell carcinoma cells
title_short Reduction in mitochondrial oxidative stress mediates hypoxia-induced resistance to cisplatin in human transitional cell carcinoma cells
title_sort reduction in mitochondrial oxidative stress mediates hypoxia-induced resistance to cisplatin in human transitional cell carcinoma cells
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8208898/
https://www.ncbi.nlm.nih.gov/pubmed/34134082
http://dx.doi.org/10.1016/j.neo.2021.05.013
work_keys_str_mv AT kimmyungchul reductioninmitochondrialoxidativestressmediateshypoxiainducedresistancetocisplatininhumantransitionalcellcarcinomacells
AT hwangsunghyun reductioninmitochondrialoxidativestressmediateshypoxiainducedresistancetocisplatininhumantransitionalcellcarcinomacells
AT yangyeseul reductioninmitochondrialoxidativestressmediateshypoxiainducedresistancetocisplatininhumantransitionalcellcarcinomacells
AT kimnayon reductioninmitochondrialoxidativestressmediateshypoxiainducedresistancetocisplatininhumantransitionalcellcarcinomacells
AT kimyongbaek reductioninmitochondrialoxidativestressmediateshypoxiainducedresistancetocisplatininhumantransitionalcellcarcinomacells