Importance of collateral circulation in coronary heart disease
Colin Berry1, Kanarath P Balachandran, Philippe L L'Allier
1Department of Medicine, Institut de Cardiologie de Montréal, Montréal, Québec, Canada. colin.berry@clinmed.gla.ac.uk
Insights
Coronary collateral arteries are vital in coronary heart disease (CHD), aiding blood flow and improving outcomes. Emerging therapies aim to enhance these natural bypasses for better patient prognosis.
Area of Science:
- Cardiovascular Research
- Medical Science
Background:
- Coronary heart disease (CHD) involves complex collateral artery findings.
- Collateral arteries play an inconsistent role in CHD progression.
Purpose of the Study:
- Review methods for assessing coronary artery collateral function.
- Identify predictors and clinical significance of collateral blood flow.
- Explore therapeutic strategies to augment collateral anastomoses.
Main Methods:
- Validated methods for collateral blood flow assessment include collateral flow index using intra-coronary pressure or flow velocity measurements.
- These techniques enhance understanding of collateral artery function.
Main Results:
- Functional collateral circulation can prevent myocardial ischemia, preserve ventricular function, and improve prognosis in CHD patients.
- Vascular progenitor cell therapies show promise in improving ventricular function post-myocardial infarction.
Conclusions:
- Coronary collateral anastomoses are a prognostically significant adaptive response in CHD.
- Augmenting collaterals via biological therapies is a key future goal for CHD treatment.
Aims:
Collateral arteries are a common but inconsistent finding in coronary heart disease (CHD). We endeavoured to review the methods for coronary artery collateral assessment, the predictors and clinical importance of collateral blood flow, and the potential for therapeutic augmentation of collateral anastomoses.
Methods And Results:
While many methods have been used to assess collateral blood flow only a few have been formally validated. Collateral flow index, as determined by measurement of intra-coronary pressure or flow velocity, is the most robust measure of collateral flow. These techniques have led to important advances in our understanding of collateral artery function. Coronary collateral arteries may prevent myocardial ischaemia in healthy subjects and in patients with CHD. A functional collateral circulation may lead to reduced ischaemia, preservation of ventricular function, and an improved prognosis. Recent trials have demonstrated that vascular progenitor cell therapies may improve ventricular function following acute myocardial infarction, raising the possibility of effective biological treatments to improve myocardial blood flow and prognosis in CHD.
Conclusions:
Coronary collateral anastomoses represent a prognostically important adaptive response in patients with CHD. Therapeutic augmentation of collaterals with emerging biological therapies represents a desirable goal for treating CHD patients.
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