Key result
Anthracycline-induced apoptosis is a primary contributor to the progression of anthracycline-induced cardiomyopathy, involving both intrinsic and extrinsic apoptotic pathways.
This review highlights the central role of intrinsic and extrinsic apoptotic pathways in anthracycline-induced cardiomyopathy and discusses potential therapeutic strategies.
Hypothesis-generating for apoptotic pathway inhibition in anthracycline cardiomyopathy; clinical trials needed before adoption.
Apoptosis is a tightly regulated physiologic process of programmed cell death that occurs in both normal and pathologic tissues. Numerous in vitro or in vivo studies have indicated that cardiomyocyte death through apoptosis and necrosis is a primary contributor to the progression of anthracycline-induced cardiomyopathy. There are now several pieces of evidence to suggest that activation of intrinsic and extrinsic apoptotic pathways contribute to anthracycline-induced apoptosis in the heart. Novel strategies were developed to address a wide variety of cardiotoxic mechanisms and apoptotic pathways by which anthracycline influences cardiac structure and function. Anthracycline-induced apoptosis provides a very valid representation of cardiotoxicity in the heart, an argument which has implications for the most appropriate animal models of damaged heart plus diverse pharmacological effects. In this review we describe various aspects of the current understanding of apoptotic cell death triggered by anthracycline. Differences in the sensitivity to anthracycline-induced apoptosis between young and adult hearts are also discussed.
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Shi et al. (2011) conducted a review in Anthracycline-induced cardiomyopathy. Anthracycline was evaluated. Anthracycline-induced apoptosis is a primary contributor to the progression of anthracycline-induced cardiomyopathy, involving both intrinsic and extrinsic apoptotic pathways.
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