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Published on: June 14, 2016
Cytokines and matrix metalloproteinases as potential biomarkers in chronic heart failure
Insights
Heart failure (HF) involves increased cytokines and matrix metalloproteinases (MMPs), contributing to heart remodeling. Systolic HF shows higher levels than diastolic HF, highlighting the need for phenotype-specific biomarker research.
Area of Science:
- Cardiovascular Medicine
- Biochemistry
- Molecular Biology
Background:
- Heart failure (HF) is associated with elevated cytokines and matrix metalloproteinases (MMPs).
- These molecules contribute to adverse myocardial remodeling in HF.
- Cytokines and MMPs are found in the myocardium and systemic circulation.
Purpose of the Study:
- To review clinical studies quantifying cytokine, MMP, and tissue inhibitor of MMP levels in HF.
- To examine differences in circulating profiles between systolic and diastolic HF phenotypes.
- To discuss the potential of these molecules as biomarkers for HF.
Main Methods:
- Review of clinical studies measuring cytokine, MMP, and tissue inhibitor of MMP levels.
- Analysis of circulating profiles in systolic HF, diastolic HF, and control groups.
- Comparison of biomarker levels across different HF phenotypes.
Main Results:
- Systolic HF patients generally exhibit higher circulating cytokine and MMP levels than diastolic HF patients.
- Diastolic HF patients show elevated cytokine and MMP levels compared to healthy controls.
- Significant differences exist in the circulating profiles of systolic versus diastolic HF.
Conclusions:
- Distinguishing between HF phenotypes is crucial for consistent biomarker identification.
- Standardization of analytical techniques and establishment of reference levels are necessary for biomarker utility.
- Cytokines and MMPs show potential as diagnostic, prognostic, and therapeutic evaluation biomarkers in HF.
Abstract:
Heart failure (HF) is accompanied by the upregulation of bioactive signaling molecules, known as cytokines, and a family of downstream proteases, matrix metalloproteinases (MMPs). It is now apparent that these molecules contribute to adverse myocardial remodeling during HF. Elevated levels of cytokines and MMPs exist in the myocardium and can subsequently spill over into the systemic circulation. The purpose of this article is to examine clinical studies of HF that have quantified levels of different types of cytokines, MMPs and endogenous tissue inhibitors of MMPs in relation to this disease process. HF is a complex syndrome that can develop from various etiologies and can be characterized into two distinct phenotypes: systolic and diastolic. This article will present recent clinical studies that have identified significant differences between the cytokine and MMP circulating profile of systolic and diastolic HF patients. In general, elevated levels of cytokines and MMPs exist in systolic HF patients when compared with diastolic HF patients, whereas diastolic HF patients have elevated levels of cytokines and MMPs when compared with controls. Therefore, future studies distinguishing between HF phenotypes may provide more consistent results in determining possible analytes to be used as biomarkers. Furthermore, this article will emphasize why standardization of analytical techniques and establishment of referent cytokine and MMP levels are necessary if these analytes are to be used as biomarkers for the diagnosis, prognosis and evaluation of treatment in the context of HF.
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