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Metabolic syndrome-associated murine aortic wall stiffening is associated with premature elastic fibers aging.

Authors :
Vanalderwiert L
Henry A
Wahart A
Carvajal Berrio DA
Brauchle EM
El Kaakour L
Schenke-Layland K
Brinckmann J
Steenbock H
Debelle L
Six I
Faury G
Jaisson S
Gillery P
Durlach V
Sartelet H
Maurice P
Bennasroune A
Martiny L
Duca L
Romier B
Blaise S
Source :
American journal of physiology. Cell physiology [Am J Physiol Cell Physiol] 2024 Sep 01; Vol. 327 (3), pp. C698-C715. Date of Electronic Publication: 2024 Jul 01.
Publication Year :
2024

Abstract

Type 2 diabetes (T2D) constitutes a major public health problem, and despite prevention efforts, this pandemic disease is one of the deadliest diseases in the world. In 2022, 6.7 million patients with T2D died prematurely from vascular complications. Indeed, diabetes increases the risk of myocardial infarction or stroke eightfold. The identification of the molecular factors involved in the occurrence of cardiovascular complications and their prevention are therefore major axes. Our hypothesis is that factors brought into play during physiological aging appear prematurely with diabetes progression. Our study focused on the aging of the extracellular matrix (ECM), a major element in the maintenance of vascular homeostasis. We characterized the morphological and functional aspects of aorta, with a focus on the collagen and elastic fibers of diabetic mice aged from 6 mo to nondiabetic mice aged 6 mo and 20 mo. The comparison with the two nondiabetic models (young and old) highlighted an exacerbated activity of proteases, which could explain a disturbance in the collagen accumulation and an excessive degradation of elastic fibers. Moreover, the generation of circulating elastin-derived peptides reflects premature aging of the ECM. These extracellular elements contribute to the appearance of vascular rigidity, often the origin of pathologies such as hypertension and atherosclerosis. In conclusion, we show that diabetic mice aged 6 mo present the same characteristics of ECM wear as those observed in mice aged 20 mo. This accelerated aortic wall remodeling could then explain the early onset of cardiovascular diseases and, therefore, the premature death of patients with T2D. NEW & NOTEWORTHY Aortic elastic fibers of young (6-mo old) individuals with diabetes degrade prematurely and exhibit an appearance like that found in aged (20-mo old) nondiabetic mice. Exacerbated elastolysis and elastin-derived peptide production are characteristic elements, contributing to early aortic wall rigidity and hypertension development. Therefore, limiting this early aging could be a judicious therapeutic approach to reduce cardiovascular complications and premature death in patients with diabetes.

Details

Language :
English
ISSN :
1522-1563
Volume :
327
Issue :
3
Database :
MEDLINE
Journal :
American journal of physiology. Cell physiology
Publication Type :
Academic Journal
Accession number :
38946422
Full Text :
https://doi.org/10.1152/ajpcell.00615.2023