Literature DB >> 34840260

Microvascular Ageing Links Metabolic Disease to Age-Related Disorders: The Role of Oxidative Stress and Inflammation in Promoting Microvascular Dysfunction.

Alessandro Mengozzi1,2, Nicola Riccardo Pugliese1, Martina Chiriacò1, Stefano Masi1,3, Agostino Virdis1, Stefano Taddei1.   

Abstract

ABSTRACT: Longer life span and increased prevalence of chronic, noncommunicable, inflammatory diseases fuel cardiovascular mortality. The microcirculation is central in the cross talk between ageing, inflammation, cardiovascular, and metabolic diseases. Microvascular dysfunction, characterized by alteration in the microvascular endothelial function and wall structure, is described in an increasing number of chronic age-associated diseases, suggesting that it might be a marker of ageing superior to chronological age. The aim of this review is to thoroughly explore the connections between microvascular dysfunction, ageing, and metabolic disorders by detailing the major role played by inflammation and oxidative stress in their evolution. Older age, hypertension, nutrient abundance, and hyperglycemia concur in the induction of a persistent low-grade inflammatory response, defined as meta-inflammation or inflammageing. This increases the local generation of reactive oxygen species that further impairs endothelial function and amplifies the local inflammatory response. Mitochondrial dysfunction is a hallmark of many age-related diseases. The alterations of mitochondrial function promote irreversible modification in microvascular structure. The interest in the hypothesis of chronic inflammation at the center of the ageing process lies in its therapeutic implications. Inhibition of specific inflammatory pathways has been shown to lower the risk of many age-related diseases, including cardiovascular disease. However, the whole architecture of the inflammatory response underpinning the ageing process and its impact on the burden of age-related diseases remain to be fully elucidated. Additional studies are needed to unravel the connection between these biological pathways and to address their therapeutic power in terms of cardiovascular prevention.
Copyright © 2021 Wolters Kluwer Health, Inc. All rights reserved.

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Year:  2021        PMID: 34840260     DOI: 10.1097/FJC.0000000000001109

Source DB:  PubMed          Journal:  J Cardiovasc Pharmacol        ISSN: 0160-2446            Impact factor:   3.105


  2 in total

1.  High exposure to phthalates is associated with HbA1c worsening in type 2 diabetes subjects with and without edentulism: a prospective pilot study.

Authors:  Amalia Gastaldelli; Anna Solini; Alessandro Mengozzi; Fabrizia Carli; Samantha Pezzica; Edoardo Biancalana
Journal:  Diabetol Metab Syndr       Date:  2022-07-20       Impact factor: 5.395

2.  Targeting SIRT1 Rescues Age- and Obesity-Induced Microvascular Dysfunction in Ex Vivo Human Vessels.

Authors:  Alessandro Mengozzi; Sarah Costantino; Agostino Virdis; Stefano Masi; Francesco Paneni; Emiliano Duranti; Monica Nannipieri; Rudj Mancini; Michele Lai; Veronica La Rocca; Ilaria Puxeddu; Luca Antonioli; Matteo Fornai; Marco Ghionzoli; Georgios Georgiopoulos; Chiara Ippolito; Nunzia Bernardini; Frank Ruschitzka; Nicola Riccardo Pugliese; Stefano Taddei
Journal:  Circ Res       Date:  2022-08-15       Impact factor: 23.213

  2 in total

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