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PMID: 18828708 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Review

Regulation of autophagy by reactive oxygen species (ROS): implications for cancer progression and treatment.

Antioxidants & redox signaling ·Vol. 11 ·No. 4 ·2009-04-00 ·Pages 777-90

Azad MB, Chen Y, Gibson SB

Abstract

Reactive oxygen species (ROS) have been identified as signaling molecules in various pathways regulating both cell survival and cell death. Autophagy, a self-digestion process that degrades intracellular structures in response to stress, such as nutrient starvation, is also involved in both cell survival and cell death. Alterations in both ROS and autophagy regulation contribute to cancer initiation and progression, and both are targets for developing therapies to induce cell death selectively in cancer cells. Many stimuli that induce ROS generation also induce autophagy, including nutrient starvation, mitochondrial toxins, hypoxia, and oxidative stress. Some of these stimuli are under clinical investigation as cancer treatments, such as 2-methoxyestrodial and arsenic trioxide. Recently, it was demonstrated that ROS can induce autophagy through several distinct mechanisms involving Atg4, catalase, and the mitochondrial electron transport chain (mETC). This leads to both cell-survival and cell-death responses and could be selective toward cancer cells. In this review, we give an overview of the roles ROS and autophagy play in cell survival and cell death, and their importance to cancer. Furthermore, we describe how autophagy is mediated by ROS and the implications of this regulation to cancer treatments.

MeSH Terms
Animals Autophagy Disease Progression Electron Transport Humans Neoplasms/pathology,therapy Reactive Oxygen Species
Chemicals
Reactive Oxygen Species
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Azad Meghan B
Manitoba Institute of Cell Biology, Faculty of Medicine, University of Manitoba, Winnipeg, Manitoba, Canada.
Chen Yongqiang
Gibson Spencer B
Article Info
Journal
Antioxidants & redox signaling
Abbr.
Antioxid Redox Signal
ISSN
1557-7716
Published
2009-04-00
Pages
777-90
Language
English
Region
United States
NLM ID
100888899
Subset
IM
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