| Literature DB >> 34488616 |
Katie Anne Fopiano1, Sawan Jalnapurkar2, Alec C Davila1, Vishal Arora2, Zsolt Bagi1.
Abstract
Coronary Microvascular Dysfunction (CMD) is now considered one of the key underlying pathologies responsible for the development of both acute and chronic cardiac complications. It has been long recognized that CMD contributes to coronary no-reflow, which occurs as an acute complication during percutaneous coronary interventions. More recently, CMD was proposed to play a mechanistic role in the development of left ventricle diastolic dysfunction in heart failure with preserved ejection fraction (HFpEF). Emerging evidence indicates that a chronic low-grade pro-inflammatory activation predisposes patients to both acute and chronic cardiovascular complications raising the possibility that pro-inflammatory mediators serve as a mechanistic link in HFpEF. Few recent studies have evaluated the role of the hyaluronan-CD44 axis in inflammation-related cardiovascular pathologies, thus warranting further investigations. This review article summarizes current evidence for the role of CMD in the development of HFpEF, focusing on molecular mediators of chronic proinflammatory as well as oxidative stress mechanisms and possible therapeutic approaches to consider for treatment and prevention. Copyright© Bentham Science Publishers; For any queries, please email at epub@benthamscience.net.Entities:
Keywords: Heart failure; coronary arteries; inflammation; microvascular dysfunction; oxidative stress; preserved ejection fraction
Mesh:
Year: 2022 PMID: 34488616 PMCID: PMC9413735 DOI: 10.2174/1573403X17666210831144651
Source DB: PubMed Journal: Curr Cardiol Rev ISSN: 1573-403X