Key result
Metabolic syndrome and hsCRP ≥3 mg/L linked to reduced myocardial mechano-energetic efficiency in nondiabetics.
Why the study?
Metabolic syndrome and elevated hsCRP predict cardiovascular risk, and reduced myocardial mechano-energetic efficiency is an independent cardiovascular predictor, prompting evaluation of their association.
Are metabolic syndrome and elevated hsCRP associated with reduced myocardial mechano-energetic efficiency in nondiabetic and prediabetic individuals?
Observational (n=1,975)
Are metabolic syndrome and elevated hsCRP associated with reduced myocardial mechano-energetic efficiency in nondiabetic and prediabetic individuals?
Metabolic syndrome and elevated hsCRP are independently associated with impaired myocardial mechano-energetic efficiency, an established predictor of adverse cardiovascular events, in nondiabetic and prediabetic individuals.
Association in cross-sectional data supports further study; leaves open causality and clinical relevance for myocardial efficiency.
CONTEXT: Metabolic syndrome and elevated high-sensitivity C-reactive protein (hsCRP) levels are associated with risk of cardiovascular diseases. A reduced myocardial mechano-energetic efficiency (MEE) has been found to be an independent predictor of cardiovascular disease. OBJECTIVE: To evaluate the association between metabolic syndrome and hsCRP levels with impaired MEE. METHODS: Myocardial MEE was assessed by a validated echocardiography-derived measure in 1975 nondiabetic and prediabetic individuals subdivided into 2 groups according to the presence of metabolic syndrome. RESULTS: Individuals with metabolic syndrome exhibited increased stroke work and myocardial oxygen consumption estimated by rate pressure product, and a reduced MEE per gram of left ventricular mass (MEEi) compared with subjects without metabolic syndrome, after adjusting for age and sex. Myocardial MEEi progressively decreased in parallel with the increase in the number of metabolic syndrome components. In a multivariable regression analysis, both metabolic syndrome and hsCRP contributed to reduced myocardial MEEi independently of sex, total cholesterol, high-density lipoprotein, triglycerides, fasting, and 2-hour postload glucose levels. When the study population was divided into 4 groups by the presence or absence of metabolic syndrome and by hsCRP levels above and below 3 mg/L, hsCRP levels ≥3 mg/L were associated with reduced myocardial MEEi both in subjects with metabolic syndrome and in those without the syndrome. CONCLUSION: Nondiabetic and prediabetic individuals with metabolic syndrome exhibit increased stroke work and myocardial oxygen consumption, and an impaired MEEi, an established predictor of adverse cardiovascular events, and elevated hsCRP levels in combination with metabolic syndrome aggravate the myocardial MEEi impairment.
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Cefalo et al. (2023) conducted an observational in Nondiabetic and prediabetic (n=1,975). Metabolic syndrome and elevated hsCRP vs. Absence of metabolic syndrome was evaluated on Myocardial mechano-energetic efficiency per gram of left ventricular mass (MEEi). Metabolic syndrome and hsCRP levels ≥3 mg/L were independently associated with reduced myocardial mechano-energetic efficiency in 1975 nondiabetic and prediabetic individuals.
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