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Scanning Electron Microscopy of Macerated Tissue to Visualize the Extracellular Matrix
Published on: June 14, 2016
Inflammaging and Senescence-Driven Extracellular Matrix Remodeling in Age-Associated Cardiovascular Disease
Ewelina Młynarska1, Adrianna Kowalik1, Agnieszka Krajewska1
1Department of Nephrocardiology, Medical University of Lodz, Ul. Zeromskiego 113, 90-549 Lodz, Poland.
Insights
Cardiovascular aging drives disease through inflammation and cellular changes. New therapies targeting these aging hallmarks show promise for reversing age-related heart and blood vessel damage.
Area of Science:
- Cardiovascular Science
- Aging Biology
- Molecular Medicine
Background:
- Cardiovascular aging is a major contributor to global cardiovascular disease burden, especially in older adults.
- Age-related cardiovascular remodeling involves chronic inflammation (inflammaging), oxidative stress, cellular senescence, and extracellular matrix changes.
- These factors impair endothelial function, promote fibrosis, and compromise cardiac and vascular integrity.
Purpose of the Study:
- To review the molecular and cellular mechanisms of cardiovascular remodeling in aging.
- To explore the role of key molecular pathways and aging hallmarks in cardiovascular disease.
- To discuss emerging molecular therapies for age-related cardiovascular conditions.
Main Methods:
- Review of molecular and cellular mechanisms.
- Analysis of key molecular pathways (e.g., RAAS, NF-κB, NLRP3 inflammasome, IL-6, TGF-β).
- Examination of aging hallmarks like inflammaging, oxidative stress, senescence, and ECM remodeling.
Main Results:
- Chronic inflammation, oxidative stress, and cellular senescence drive maladaptive cardiovascular remodeling.
- Key molecular pathways contribute to vascular cell transdifferentiation, immune dysregulation, and tissue stiffening.
- Senescence-associated secretory phenotype and mitochondrial dysfunction perpetuate detrimental cascades.
Conclusions:
- Understanding the molecular basis of cardiovascular aging and remodeling is crucial.
- Emerging therapies like senolytics, Nrf2 activators, and ECM modulators offer potential to reverse or halt maladaptive remodeling.
- Targeting aging mechanisms provides new avenues for improving cardiovascular outcomes in older adults.
Abstract:
Cardiovascular aging is a multifactorial and systemic process that contributes significantly to the global burden of cardiovascular disease, particularly in older populations. This review explores the molecular and cellular mechanisms underlying cardiovascular remodeling in age-related conditions such as hypertension, atrial fibrillation, atherosclerosis, and heart failure. Central to this process are chronic low-grade inflammation (inflammaging), oxidative stress, cellular senescence, and maladaptive extracellular matrix remodeling. These hallmarks of aging interact to impair endothelial function, promote fibrosis, and compromise cardiac and vascular integrity. Key molecular pathways-including the renin-angiotensin-aldosterone system, NF-κB, NLRP3 inflammasome, IL-6, and TGF-β signaling-contribute to the transdifferentiation of vascular cells, immune dysregulation, and progressive tissue stiffening. We also highlight the role of the senescence-associated secretory phenotype and mitochondrial dysfunction in perpetuating inflammatory and fibrotic cascades. Emerging molecular therapies offer promising strategies to reverse or halt maladaptive remodeling. These include senescence-targeting agents (senolytics), Nrf2 activators, RNA-based drugs, and ECM-modulating compounds such as MMP inhibitors. Additionally, statins and anti-inflammatory biologics (e.g., IL-1β inhibitors) exhibit pleiotropic effects that extend beyond traditional risk factor control. Understanding the molecular basis of remodeling is essential for guiding future research and improving outcomes in older adults at risk of CVD.
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