Ischemic cardiomyopathy: epidemiology, pathophysiology, outcomes, and therapeutic options.
Paola PastenaJesse T FryeCarson HoMarc E GoldschmidtAndreas P KalogeropoulosPublished in: Heart failure reviews (2023)
Ischemic cardiomyopathy (ICM) is the most prevalent cause of heart failure (HF) in developed countries, with significant morbidity and mortality, despite constant improvements in the management of coronary artery disease. Current literature on this topic remains fragmented. Therefore, this review aimed to summarize the most recent data on ICM, focusing on its definition, epidemiology, outcomes, and therapeutic options. The most widely accepted definition is represented by a left ventricular dysfunction in the presence of significant coronary artery disease. The prevalence of ICM is largely influenced by age and sex, with older individuals and males being more affected. Its pathophysiology is characterized by plaque buildup, thrombus formation, hypoperfusion, ischemic cell death, and left ventricular remodeling. Despite improvements in therapy, ICM still represents a public health burden, with a 1-year mortality rate of 16% and a 5-year mortality rate of approximately 40% in the USA and Europe. Therefore, optimization of cardiovascular function, prevention of progressive remodeling, reduction of HF symptoms, and improved survival are the main goals of treatment. Therapeutic options for ICM include lifestyle changes, optimal medical therapy, revascularization, device therapy, mechanical circulatory support, and cardiac transplantation. Personalized management strategies and tailored patient care are needed to improve the outcomes of patients with ICM.
Keyphrases
- heart failure
- left ventricular
- coronary artery disease
- risk factors
- public health
- cardiovascular events
- cell death
- percutaneous coronary intervention
- healthcare
- acute heart failure
- cardiovascular disease
- cardiac resynchronization therapy
- ischemia reperfusion injury
- metabolic syndrome
- aortic stenosis
- multiple sclerosis
- hypertrophic cardiomyopathy
- oxidative stress
- mitral valve
- systematic review
- type diabetes
- stem cells
- skeletal muscle
- mesenchymal stem cells
- extracorporeal membrane oxygenation
- machine learning
- combination therapy
- bone marrow
- artificial intelligence
- transcatheter aortic valve replacement
- global health
- aortic valve
- depressive symptoms