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Assessing Stem Cell DNA Integrity for Cardiac Cell Therapy
Published on: January 25, 2019
Targeting Cardiac Stem Cell Senescence to Treat Cardiac Aging and Disease
Eleonora Cianflone1, Michele Torella2, Flavia Biamonte3
1Department of Medical and Surgical Sciences, Magna Graecia University, 88100 Catanzaro, Italy.
Abstract:
Adult stem/progenitor are a small population of cells that reside in tissue-specific niches and possess the potential to differentiate in all cell types of the organ in which they operate. Adult stem cells are implicated with the homeostasis, regeneration, and aging of all tissues. Tissue-specific adult stem cell senescence has emerged as an attractive theory for the decline in mammalian tissue and organ function during aging. Cardiac aging, in particular, manifests as functional tissue degeneration that leads to heart failure. Adult cardiac stem/progenitor cell (CSC) senescence has been accordingly associated with physiological and pathological processes encompassing both non-age and age-related decline in cardiac tissue repair and organ dysfunction and disease. Senescence is a highly active and dynamic cell process with a first classical hallmark represented by its replicative limit, which is the establishment of a stable growth arrest over time that is mainly secondary to DNA damage and reactive oxygen species (ROS) accumulation elicited by different intrinsic stimuli (like metabolism), as well as external stimuli and age. Replicative senescence is mainly executed by telomere shortening, the activation of the p53/p16INK4/Rb molecular pathways, and chromatin remodeling. In addition, senescent cells produce and secrete a complex mixture of molecules, commonly known as the senescence-associated secretory phenotype (SASP), that regulate most of their non-cell-autonomous effects. In this review, we discuss the molecular and cellular mechanisms regulating different characteristics of the senescence phenotype and their consequences for adult CSCs in particular. Because senescent cells contribute to the outcome of a variety of cardiac diseases, including age-related and unrelated cardiac diseases like diabetic cardiomyopathy and anthracycline cardiotoxicity, therapies that target senescent cell clearance are actively being explored. Moreover, the further understanding of the reversibility of the senescence phenotype will help to develop novel rational therapeutic strategies.
Insights
Cellular senescence, a key factor in aging, drives cardiac dysfunction and heart failure. Targeting senescent cells offers promising therapeutic strategies for age-related cardiac diseases.
Area of Science:
- Gerontology and Regenerative Medicine
- Cardiovascular Biology
- Cellular Biology
Background:
- Adult stem cells maintain tissue homeostasis and regeneration.
- Cellular senescence, characterized by growth arrest and the senescence-associated secretory phenotype (SASP), contributes to age-related tissue decline.
- Cardiac aging leads to functional degeneration and heart failure, with cardiac stem/progenitor cell (CSC) senescence implicated in this process.
Purpose of the Study:
- To review the molecular and cellular mechanisms of senescence in adult cardiac stem/progenitor cells (CSCs).
- To discuss the role of CSC senescence in age-related and non-age-related cardiac diseases.
- To explore therapeutic strategies targeting senescent cells for cardiac conditions.
Main Methods:
- Review of existing literature on cellular senescence, CSCs, and cardiac aging.
- Analysis of molecular pathways involved in replicative senescence (telomere shortening, p53/p16INK4/Rb pathways).
- Discussion of the senescence-associated secretory phenotype (SASP) and its non-cell-autonomous effects.
Main Results:
- Cellular senescence, driven by DNA damage and ROS, leads to replicative arrest and SASP.
- Senescent CSCs contribute to cardiac dysfunction and heart failure.
- Senescent cells are implicated in various cardiac pathologies, including diabetic cardiomyopathy and anthracycline cardiotoxicity.
Conclusions:
- Senescence is a critical factor in cardiac aging and disease.
- Targeting senescent cell clearance is a potential therapeutic avenue for cardiac conditions.
- Understanding senescence reversibility may lead to novel therapeutic strategies for heart disease.
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