Anthracycline-induced cardiotoxicity (AIC) persists as a significant cause of morbidity and mortality in cancer survivors. Although many protective strategies have been evaluated, cardiotoxicity remains an ongoing threat. The mechanisms of AIC remain unclear; however, several pathways have been proposed, suggesting a multifactorial origin. When the central role of topoisomerase 2β in the pathophysiology of AIC was described some years ago, the classical reactive oxygen species (ROS) hypothesis shifted to a secondary position. However, new insights have reemphasized the importance of the role of oxidative stress-mediated signaling as a common pathway and a critical modulator of the different mechanisms involved in AIC. A better understanding...
Anthracyclines are among the most effective anticancer drugs ever developed. Unfortunately, their cl...
Anthracycline chemotherapy maintains a prominent role in treating many forms of cancer. Cardiotoxic ...
Redox abnormalities are at the crossroad of cardiovascular diseases, cancer and cardiotoxicity from ...
AbstractAnthracycline compounds are major culprits in chemotherapy-induced cardiotoxicity, which is ...
Chemotherapy-induced cardiotoxicity is a serious complication that poses a serious threat to life an...
The anthracyclines constitute a group of drugs widely used for the treatment of a variety of human t...
The utility of anthracycline antineoplastic agents in the clinic is compromised by the risk of cardi...
The production of reactive species is a core of the redox cycling profile of anthracyclines. However...
Anthracyclines remain the cornerstone in the treatment of many malignancies including lymphomas, leu...
Anthracyclines remain the cornerstone in the treatment of many malignancies including lymphomas, leu...
The utility of anthracycline antineoplastic agents in the clinic is compromised by the risk of cardi...
The production of reactive species is a core of the redox cycling profile of anthracyclines. However...
The utility of anthracycline antineoplastic agents in the clinic is compromised by the risk of cardi...
The utility of anthracycline antineoplastic agents in the clinic is compromised by the risk of cardi...
AbstractThe utility of anthracycline antineoplastic agents in the clinic is compromised by the risk ...
Anthracyclines are among the most effective anticancer drugs ever developed. Unfortunately, their cl...
Anthracycline chemotherapy maintains a prominent role in treating many forms of cancer. Cardiotoxic ...
Redox abnormalities are at the crossroad of cardiovascular diseases, cancer and cardiotoxicity from ...
AbstractAnthracycline compounds are major culprits in chemotherapy-induced cardiotoxicity, which is ...
Chemotherapy-induced cardiotoxicity is a serious complication that poses a serious threat to life an...
The anthracyclines constitute a group of drugs widely used for the treatment of a variety of human t...
The utility of anthracycline antineoplastic agents in the clinic is compromised by the risk of cardi...
The production of reactive species is a core of the redox cycling profile of anthracyclines. However...
Anthracyclines remain the cornerstone in the treatment of many malignancies including lymphomas, leu...
Anthracyclines remain the cornerstone in the treatment of many malignancies including lymphomas, leu...
The utility of anthracycline antineoplastic agents in the clinic is compromised by the risk of cardi...
The production of reactive species is a core of the redox cycling profile of anthracyclines. However...
The utility of anthracycline antineoplastic agents in the clinic is compromised by the risk of cardi...
The utility of anthracycline antineoplastic agents in the clinic is compromised by the risk of cardi...
AbstractThe utility of anthracycline antineoplastic agents in the clinic is compromised by the risk ...
Anthracyclines are among the most effective anticancer drugs ever developed. Unfortunately, their cl...
Anthracycline chemotherapy maintains a prominent role in treating many forms of cancer. Cardiotoxic ...
Redox abnormalities are at the crossroad of cardiovascular diseases, cancer and cardiotoxicity from ...