Cargando…

Cooperation of endogenous and exogenous reactive oxygen species induced by zinc peroxide nanoparticles to enhance oxidative stress-based cancer therapy

Reactive oxygen species (ROS)-generating anticancer agents can act through two different mechanisms: (i) elevation of endogenous ROS production in mitochondria, or (ii) formation/delivery of exogenous ROS within cells. However, there is a lack of research on the development of ROS-generating nanosys...

Descripción completa

Detalles Bibliográficos
Autores principales: Lin, Li-Sen, Wang, Jun-Feng, Song, Jibin, Liu, Yijing, Zhu, Guizhi, Dai, Yunlu, Shen, Zheyu, Tian, Rui, Song, Justin, Wang, Zhantong, Tang, Wei, Yu, Guocan, Zhou, Zijian, Yang, Zhen, Huang, Tao, Niu, Gang, Yang, Huang-Hao, Chen, Zhi-Yi, Chen, Xiaoyuan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6831298/
https://www.ncbi.nlm.nih.gov/pubmed/31695762
http://dx.doi.org/10.7150/thno.39831
_version_ 1783465937080418304
author Lin, Li-Sen
Wang, Jun-Feng
Song, Jibin
Liu, Yijing
Zhu, Guizhi
Dai, Yunlu
Shen, Zheyu
Tian, Rui
Song, Justin
Wang, Zhantong
Tang, Wei
Yu, Guocan
Zhou, Zijian
Yang, Zhen
Huang, Tao
Niu, Gang
Yang, Huang-Hao
Chen, Zhi-Yi
Chen, Xiaoyuan
author_facet Lin, Li-Sen
Wang, Jun-Feng
Song, Jibin
Liu, Yijing
Zhu, Guizhi
Dai, Yunlu
Shen, Zheyu
Tian, Rui
Song, Justin
Wang, Zhantong
Tang, Wei
Yu, Guocan
Zhou, Zijian
Yang, Zhen
Huang, Tao
Niu, Gang
Yang, Huang-Hao
Chen, Zhi-Yi
Chen, Xiaoyuan
author_sort Lin, Li-Sen
collection PubMed
description Reactive oxygen species (ROS)-generating anticancer agents can act through two different mechanisms: (i) elevation of endogenous ROS production in mitochondria, or (ii) formation/delivery of exogenous ROS within cells. However, there is a lack of research on the development of ROS-generating nanosystems that combine endogenous and exogenous ROS to enhance oxidative stress-mediated cancer cell death. Methods: A ROS-generating agent based on polymer-modified zinc peroxide nanoparticles (ZnO(2) NPs) was presented, which simultaneously delivered exogenous H(2)O(2) and Zn(2+) capable of amplifying endogenous ROS production for synergistic cancer therapy. Results: After internalization into tumor cells, ZnO(2) NPs underwent decomposition in response to mild acidic pH, resulting in controlled release of H(2)O(2) and Zn(2+). Intriguingly, Zn(2+) could increase the production of mitochondrial O(2)·(-) and H(2)O(2) by inhibiting the electron transport chain, and thus exerted anticancer effect in a synergistic manner with the exogenously released H(2)O(2) to promote cancer cell killing. Furthermore, ZnO(2) NPs were doped with manganese via cation exchange, making them an activatable magnetic resonance imaging contrast agent. Conclusion: This study establishes a ZnO(2)-based theranostic nanoplatform which achieves enhanced oxidative damage to cancer cells by a two-pronged approach of combining endogenous and exogenous ROS.
format Online
Article
Text
id pubmed-6831298
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher Ivyspring International Publisher
record_format MEDLINE/PubMed
spelling pubmed-68312982019-11-06 Cooperation of endogenous and exogenous reactive oxygen species induced by zinc peroxide nanoparticles to enhance oxidative stress-based cancer therapy Lin, Li-Sen Wang, Jun-Feng Song, Jibin Liu, Yijing Zhu, Guizhi Dai, Yunlu Shen, Zheyu Tian, Rui Song, Justin Wang, Zhantong Tang, Wei Yu, Guocan Zhou, Zijian Yang, Zhen Huang, Tao Niu, Gang Yang, Huang-Hao Chen, Zhi-Yi Chen, Xiaoyuan Theranostics Research Paper Reactive oxygen species (ROS)-generating anticancer agents can act through two different mechanisms: (i) elevation of endogenous ROS production in mitochondria, or (ii) formation/delivery of exogenous ROS within cells. However, there is a lack of research on the development of ROS-generating nanosystems that combine endogenous and exogenous ROS to enhance oxidative stress-mediated cancer cell death. Methods: A ROS-generating agent based on polymer-modified zinc peroxide nanoparticles (ZnO(2) NPs) was presented, which simultaneously delivered exogenous H(2)O(2) and Zn(2+) capable of amplifying endogenous ROS production for synergistic cancer therapy. Results: After internalization into tumor cells, ZnO(2) NPs underwent decomposition in response to mild acidic pH, resulting in controlled release of H(2)O(2) and Zn(2+). Intriguingly, Zn(2+) could increase the production of mitochondrial O(2)·(-) and H(2)O(2) by inhibiting the electron transport chain, and thus exerted anticancer effect in a synergistic manner with the exogenously released H(2)O(2) to promote cancer cell killing. Furthermore, ZnO(2) NPs were doped with manganese via cation exchange, making them an activatable magnetic resonance imaging contrast agent. Conclusion: This study establishes a ZnO(2)-based theranostic nanoplatform which achieves enhanced oxidative damage to cancer cells by a two-pronged approach of combining endogenous and exogenous ROS. Ivyspring International Publisher 2019-09-23 /pmc/articles/PMC6831298/ /pubmed/31695762 http://dx.doi.org/10.7150/thno.39831 Text en © The author(s) This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Lin, Li-Sen
Wang, Jun-Feng
Song, Jibin
Liu, Yijing
Zhu, Guizhi
Dai, Yunlu
Shen, Zheyu
Tian, Rui
Song, Justin
Wang, Zhantong
Tang, Wei
Yu, Guocan
Zhou, Zijian
Yang, Zhen
Huang, Tao
Niu, Gang
Yang, Huang-Hao
Chen, Zhi-Yi
Chen, Xiaoyuan
Cooperation of endogenous and exogenous reactive oxygen species induced by zinc peroxide nanoparticles to enhance oxidative stress-based cancer therapy
title Cooperation of endogenous and exogenous reactive oxygen species induced by zinc peroxide nanoparticles to enhance oxidative stress-based cancer therapy
title_full Cooperation of endogenous and exogenous reactive oxygen species induced by zinc peroxide nanoparticles to enhance oxidative stress-based cancer therapy
title_fullStr Cooperation of endogenous and exogenous reactive oxygen species induced by zinc peroxide nanoparticles to enhance oxidative stress-based cancer therapy
title_full_unstemmed Cooperation of endogenous and exogenous reactive oxygen species induced by zinc peroxide nanoparticles to enhance oxidative stress-based cancer therapy
title_short Cooperation of endogenous and exogenous reactive oxygen species induced by zinc peroxide nanoparticles to enhance oxidative stress-based cancer therapy
title_sort cooperation of endogenous and exogenous reactive oxygen species induced by zinc peroxide nanoparticles to enhance oxidative stress-based cancer therapy
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6831298/
https://www.ncbi.nlm.nih.gov/pubmed/31695762
http://dx.doi.org/10.7150/thno.39831
work_keys_str_mv AT linlisen cooperationofendogenousandexogenousreactiveoxygenspeciesinducedbyzincperoxidenanoparticlestoenhanceoxidativestressbasedcancertherapy
AT wangjunfeng cooperationofendogenousandexogenousreactiveoxygenspeciesinducedbyzincperoxidenanoparticlestoenhanceoxidativestressbasedcancertherapy
AT songjibin cooperationofendogenousandexogenousreactiveoxygenspeciesinducedbyzincperoxidenanoparticlestoenhanceoxidativestressbasedcancertherapy
AT liuyijing cooperationofendogenousandexogenousreactiveoxygenspeciesinducedbyzincperoxidenanoparticlestoenhanceoxidativestressbasedcancertherapy
AT zhuguizhi cooperationofendogenousandexogenousreactiveoxygenspeciesinducedbyzincperoxidenanoparticlestoenhanceoxidativestressbasedcancertherapy
AT daiyunlu cooperationofendogenousandexogenousreactiveoxygenspeciesinducedbyzincperoxidenanoparticlestoenhanceoxidativestressbasedcancertherapy
AT shenzheyu cooperationofendogenousandexogenousreactiveoxygenspeciesinducedbyzincperoxidenanoparticlestoenhanceoxidativestressbasedcancertherapy
AT tianrui cooperationofendogenousandexogenousreactiveoxygenspeciesinducedbyzincperoxidenanoparticlestoenhanceoxidativestressbasedcancertherapy
AT songjustin cooperationofendogenousandexogenousreactiveoxygenspeciesinducedbyzincperoxidenanoparticlestoenhanceoxidativestressbasedcancertherapy
AT wangzhantong cooperationofendogenousandexogenousreactiveoxygenspeciesinducedbyzincperoxidenanoparticlestoenhanceoxidativestressbasedcancertherapy
AT tangwei cooperationofendogenousandexogenousreactiveoxygenspeciesinducedbyzincperoxidenanoparticlestoenhanceoxidativestressbasedcancertherapy
AT yuguocan cooperationofendogenousandexogenousreactiveoxygenspeciesinducedbyzincperoxidenanoparticlestoenhanceoxidativestressbasedcancertherapy
AT zhouzijian cooperationofendogenousandexogenousreactiveoxygenspeciesinducedbyzincperoxidenanoparticlestoenhanceoxidativestressbasedcancertherapy
AT yangzhen cooperationofendogenousandexogenousreactiveoxygenspeciesinducedbyzincperoxidenanoparticlestoenhanceoxidativestressbasedcancertherapy
AT huangtao cooperationofendogenousandexogenousreactiveoxygenspeciesinducedbyzincperoxidenanoparticlestoenhanceoxidativestressbasedcancertherapy
AT niugang cooperationofendogenousandexogenousreactiveoxygenspeciesinducedbyzincperoxidenanoparticlestoenhanceoxidativestressbasedcancertherapy
AT yanghuanghao cooperationofendogenousandexogenousreactiveoxygenspeciesinducedbyzincperoxidenanoparticlestoenhanceoxidativestressbasedcancertherapy
AT chenzhiyi cooperationofendogenousandexogenousreactiveoxygenspeciesinducedbyzincperoxidenanoparticlestoenhanceoxidativestressbasedcancertherapy
AT chenxiaoyuan cooperationofendogenousandexogenousreactiveoxygenspeciesinducedbyzincperoxidenanoparticlestoenhanceoxidativestressbasedcancertherapy