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Published on: October 10, 2020
Cardiac aging: Molecular mechanisms and therapeutic interventions
Xin Li1, Xiaoyan Pang2, Haiyan Sun3
1Department of Infectious Disease, The First Hospital of China Medical University, Shenyang, Liaoning 110001, PR China.
Abstract:
Cardiac aging is a fundamental driver of cardiovascular diseases (CVDs), the leading cause of global mortality. While age is a non-modifiable risk factor, understanding its underlying molecular basis offers new avenues for therapeutic intervention. This review synthesizes the key mechanisms driving cardiac aging and evaluates promising strategies to counteract them. Our aim is to provide a forward-looking perspective, arguing that a paradigm shift from single-target interventions to synergistic, systems-level approaches is necessary to promote healthy aging and longevity. We delineate the hallmark structural and functional changes of the aging heart, including left ventricular hypertrophy, diastolic dysfunction, and increased fibrosis. We then explore the core molecular pathways, highlighting the critical roles of dysfunctional autophagy, mitochondrial oxidative stress, telomere shortening, and profound epigenetic shifts, particularly the dysregulation of non-coding RNAs such as miR-34a. Building on this mechanistic framework, we assess a range of interventions, from lifestyle modifications like caloric restriction to targeted pharmaceuticals including rapamycin and senolytics. Furthermore, we discuss the potential of next-generation therapies such as microbiome modulation, cell-based regeneration, and gene editing. We conclude that targeting these interconnected aging pathways represents a new frontier in cardiology, with the potential to move beyond disease management and toward extending cardiovascular healthspan.
Insights
Understanding cardiac aging mechanisms is key to preventing cardiovascular diseases (CVDs). A systems-level approach targeting interconnected pathways offers new hope for promoting heart healthspan and longevity.
Area of Science:
- Cardiology
- Gerontology
- Molecular Biology
Background:
- Cardiac aging is a primary risk factor for cardiovascular diseases (CVDs), the leading global cause of mortality.
- Key age-related cardiac changes include left ventricular hypertrophy, diastolic dysfunction, and fibrosis.
- Molecular drivers include autophagy dysfunction, oxidative stress, telomere shortening, and epigenetic alterations.
Purpose of the Study:
- To review the mechanisms driving cardiac aging.
- To evaluate therapeutic strategies for counteracting cardiac aging.
- To advocate for systems-level approaches to promote cardiovascular healthspan.
Main Methods:
- Literature review synthesizing current research on cardiac aging mechanisms.
- Analysis of structural and functional changes in the aging heart.
- Exploration of molecular pathways implicated in cardiac aging.
- Assessment of various interventions, from lifestyle changes to novel therapies.
Main Results:
- Identified hallmark changes in the aging heart and core molecular pathways (autophagy, mitochondria, telomeres, epigenetics).
- Highlighted the role of non-coding RNAs like miR-34a in cardiac aging.
- Evaluated interventions including caloric restriction, rapamycin, senolytics, microbiome modulation, and gene editing.
Conclusions:
- Targeting interconnected aging pathways is a novel frontier in cardiology.
- A shift towards synergistic, systems-level interventions is needed.
- These approaches hold potential for extending cardiovascular healthspan beyond disease management.
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