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We tested the hypothesis that carotid artery stiffening with ageing is associated with transforming growth factor-β1 (TGF-β1)-related increases in adventitial collagen and reductions in medial elastin, which would be reversed by voluntary aerobic exercise. Ex vivo carotid artery incremental stiffness was greater in old (29–32 months, n = 11) vs. young (4–7 months, n = 8) cage control B6D2F1 mice (8.84 ± 1.80 vs. 4.54 ± 1.18 AU, P < 0.05), and was associated with selective increases in collagen I and III and TGF-β1 protein expression in the adventitia (P < 0.05), related to an increase in smooth muscle α-actin (SMαA) (myofibroblast phenotype) (P < 0.05). In cultured adventitial fibroblasts, TGF-β1 induced increases in superoxide and collagen I protein (P < 0.05), which were inhibited by Tempol, a superoxide dismutase. Medial elastin was reduced with ageing, accompanied by decreases in the pro-synthetic elastin enzyme, lysyl oxidase, and increases in the elastin-degrading enzyme, matrix metalloproteinase 2. Fibronectin was unchanged with ageing, but there was a small increase in calcification (P < 0.05). Increased incremental stiffness in old mice was completely reversed (3.98 ± 0.34 AU, n = 5) by 10–14 weeks of modest voluntary wheel running (1.13 ± 0.29 km day−1), whereas greater voluntary wheel running (10.62 ± 0.49 km day−1) had no effect on young mice. The amelioration of carotid artery stiffness by wheel running in old mice was associated with reductions in collagen I and III and TGF-β1, partial reversal of the myofibroblast phenotype (reduced SMαA) and reduced calcification (all P < 0.05 vs. old controls), whereas elastin and its modulating enzymes were unaffected. Adventitial TGF-β1-related oxidative stress may play a key role in collagen deposition and large elastic artery stiffening with ageing and the efficacious effects of voluntary aerobic exercise.
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http://dx.doi.org/10.1113/jphysiol.2010.194753 | DOI Listing |
Alzheimers Dement
September 2025
Research Service, VA San Diego Healthcare System, San Diego, California, USA.
Introduction: Among individuals who are amyloid biomarker-positive or apolipoprotein E (APOE) ε4 carriers, arterial stiffness reflected by higher pulse wave velocity (PWV) has been associated with lower cognition cross-sectionally. Less is known about longitudinal associations.
Methods: The sample included 152 older adults without dementia.
Cureus
August 2025
Internal Medicine, Malcom Randall Veterans Affairs Medical Center, Gainesville, USA.
Dysphagia lusoria is an uncommon cause of dysphagia with an increasing incidence with age. It is unknown why individuals with dysphagia lusoria typically remain asymptomatic until older adulthood, but some theorize that it could be related to physiologic and anatomical changes that occur with the aging process, such as increased esophageal rigidity and stiffening of vascular walls with atherosclerosis, that make the compression from these congenital aberrations more impactful. While uncommon, it is also likely underrecognized due to its being diagnostically challenging to identify.
View Article and Find Full Text PDFBiomolecules
August 2025
Department of Medicine & Cardiology, University of Antwerp, 2000 Antwerpen, Belgium.
Aging is associated with aortic stiffening (AoSt), a condition characterized by diminished aortic elasticity that predisposes individuals to cognitive decline, including Alzheimer's disease (AD). Emerging evidence implicates medin, which is derived from milk fat globule-EGF factor 8 protein (MFG-E8), as a key link between AoSt and AD. Medin aggregates into aortic medial amyloid (AMA), which is found in approximately 97% of Caucasian individuals aged 50 and above, contributing to vascular inflammation, calcification, and loss of arterial elasticity.
View Article and Find Full Text PDFPlanta Med
August 2025
Department of Pharmaceutical Sciences, Laboratory of Physiopharmacology, University of Antwerp, Belgium.
Age-related arterial stiffening is a hallmark of vascular ageing and a key driver of cardiovascular disease. Oxidative stress, impaired autophagy, and extracellular matrix remodelling play an important role in the progression of aortic stiffening. Hydroxytyrosol (HT), a phenolic compound in olives, has demonstrated antioxidant properties and the ability to modulate autophagy, positioning it as a potential therapeutic for vascular ageing.
View Article and Find Full Text PDFCureus
July 2025
School of Dental Medicine, Lake Erie College of Osteopathic Medicine, Bradenton, USA.
Cardiovascular disease and aging are key contributors to myocardial remodeling, often leading to fibrosis, cellular hypertrophy, and impaired cardiac function. Understanding these structural changes is essential for explaining the pathophysiology of heart failure. This study examined histopathological changes in myocardial tissue from a post-mortem cadaver with heart failure.
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