The cellular REDOX regulatory systems play a central role in maintaining REDOX homeostasis that is crucial for cell integrity, survival, and proliferation. To date, a substantial amount of data has demonstrated that cancer cells typically undergo increasing oxidative stress as the tumor develops, upregulating these important antioxidant systems in order to survive, proliferate, and metastasize under these extreme oxidative stress conditions. Since a large number of chemotherapeutic agents currently used in the clinic rely on the induction of ROS overload or change of ROS quality to kill the tumor, the cancer cell REDOX adaptation represents a significant obstacle to conventional chemotherapy. In this review we will first examine the differe...
Contingent upon concentration, reactive oxygen species (ROS) influence cancer evolution in apparentl...
Endogenous mechanisms of reactive oxygen (ROS) and nitrogen species production and of antioxidant de...
Reactive oxygen species (ROS) constitute a group of highly reactive molecules that have evolved as r...
The cellular REDOX regulatory systems play a central role in maintaining REDOX homeostasis that is c...
The cellular REDOX regulatory systems play a central role in maintaining REDOX homeostasis that is c...
The cellular REDOX regulatory systems play a central role in maintaining REDOX homeostasis that is c...
The cellular REDOX regulatory systems play a central role in maintaining REDOX homeostasis that is c...
Copyright © 2016 Stéphanie Anáıs Castaldo et al. This is an open access article distributed under ...
The cellular REDOX regulatory systems play a central role in maintaining REDOX homeostasis that is c...
Reactive oxygen species (ROS) and their products are components of cell signaling pathways and play ...
Funding Information: This research was partially funded by SERB, DST, Government of India, grant num...
Abstract Oxidative stress acts as a double edged sword by being both a promoter and a suppressor of...
Contingent upon concentration, reactive oxygen species (ROS) influence cancer evolution in apparentl...
Contingent upon concentration, reactive oxygen species (ROS) influence cancer evolution in apparentl...
Contingent upon concentration, reactive oxygen species (ROS) influence cancer evolution in apparentl...
Contingent upon concentration, reactive oxygen species (ROS) influence cancer evolution in apparentl...
Endogenous mechanisms of reactive oxygen (ROS) and nitrogen species production and of antioxidant de...
Reactive oxygen species (ROS) constitute a group of highly reactive molecules that have evolved as r...
The cellular REDOX regulatory systems play a central role in maintaining REDOX homeostasis that is c...
The cellular REDOX regulatory systems play a central role in maintaining REDOX homeostasis that is c...
The cellular REDOX regulatory systems play a central role in maintaining REDOX homeostasis that is c...
The cellular REDOX regulatory systems play a central role in maintaining REDOX homeostasis that is c...
Copyright © 2016 Stéphanie Anáıs Castaldo et al. This is an open access article distributed under ...
The cellular REDOX regulatory systems play a central role in maintaining REDOX homeostasis that is c...
Reactive oxygen species (ROS) and their products are components of cell signaling pathways and play ...
Funding Information: This research was partially funded by SERB, DST, Government of India, grant num...
Abstract Oxidative stress acts as a double edged sword by being both a promoter and a suppressor of...
Contingent upon concentration, reactive oxygen species (ROS) influence cancer evolution in apparentl...
Contingent upon concentration, reactive oxygen species (ROS) influence cancer evolution in apparentl...
Contingent upon concentration, reactive oxygen species (ROS) influence cancer evolution in apparentl...
Contingent upon concentration, reactive oxygen species (ROS) influence cancer evolution in apparentl...
Endogenous mechanisms of reactive oxygen (ROS) and nitrogen species production and of antioxidant de...
Reactive oxygen species (ROS) constitute a group of highly reactive molecules that have evolved as r...