Cardiac Physiology of Aging: Extracellular Considerations
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Summary
The role of the cardiac interstitium in the physiology of the aging myocardium is focused on, with particular emphasis on the implications to age‐related remodeling in disease.
- Type
- review
- Published
- 2015-06-24
- Cited by
- 36
- References
- 588
- OpenAlex
- https://openalex.org/W1671465572
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:31014892
Keywords
Extracellular matrix, Contractility, Disease, Pathological, Medicine
References
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- microRNA-21 promotes cardiac fibrosis and development of heart failure with preserved left ventricular ejection fraction by up-regulating Bcl-2.
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Cited by
- Aging and the cardiac collagen matrix: Novel mediators of fibrotic remodelling
- Mechanical Regulation of Cardiac Aging in Model Systems
- Surgery of the Elderly Patient
- Pathophysiological Fundamentals of Diabetic Cardiomyopathy
- Dissecting the Role of the Extracellular Matrix in Heart Disease: Lessons from the Drosophila Genetic Model
- Reduced collagen accumulation and augmented MMP-2 activity in left ventricle of old rats submitted to high-intensity resistance training.
- Akt2 ablation prolongs life span and improves myocardial contractile function with adaptive cardiac remodeling: role of Sirt1‐mediated autophagy regulation
- miR-21 suppression prevents cardiac alterations induced by d-galactose and doxorubicin.
- Ablation of toll-like receptor 4 attenuates aging-induced myocardial remodeling and contractile dysfunction through NCoRI-HDAC1-mediated regulation of autophagy.
- Nrf2: Molecular and epigenetic regulation during aging.
- Cardiovascular aging: the unveiled enigma from bench to bedside
- Development of the Myocardial Interstitium
- Раскручивание левого желудочка у детей и подростков, рожденных доношенными
- Danshenol A Alleviates Hypertension-Induced Cardiac Remodeling by Ameliorating Mitochondrial Dysfunction and Suppressing Reactive Oxygen Species Production
- Mechanotransduction in the Cardiovascular System: From Developmental Origins to Homeostasis and Pathology
- Cardiac Tissue Engineering Therapeutic Products to Enhance Myocardial Contractility
- Total iron binding capacity (TIBC) is a potential biomarker of left ventricular remodelling for patients with iron deficiency anaemia
- Mechanisms of diabetic cardiomyopathy and potential therapeutic strategies: preclinical and clinical evidence
- Non-coding RNAs and Cardiac Aging.
- Functional alterations and transcriptomic changes during zebrafish cardiac aging
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