CBS 2019
CBSMD教育中心
English

科学研究

科研文章

荐读文献

Exercise unmasks distinct pathophysiologic features in heart failure with preserved ejection fraction and pulmonary vascular disease Low shear stress induces endothelial reactive oxygen species via the AT1R/eNOS/NO pathway Fractional Flow Reserve–Guided PCI for Stable Coronary Artery Disease Diagnostic accuracy of fractional flow reserve from anatomic CT angiography Optical coherence tomography versus intravascular ultrasound to evaluate coronary artery disease and percutaneous coronary intervention Coronary Atherosclerosis T1-Weighed Characterization With Integrated Anatomical Reference: Comparison With High-Risk Plaque Features Detected by Invasive Coronary Imaging Lipid-rich plaque and myocardial perfusion after successful stenting in patients with non-ST-segment elevation acute coronary syndrome: an optical coherence tomography study Individual Lesion-Level Meta-Analysis Comparing Various Doses of Intracoronary Bolus Injection of Adenosine With Intravenous Administration of Adenosine for Fractional Flow Reserve Assessment Impact of an optical coherence tomography guided approach in acute coronary syndromes: A propensity matched analysis from the international FORMIDABLE-CARDIOGROUP IV and USZ registry Experimental basis of determining maximum coronary, myocardial, and collateral blood flow by pressure measurements for assessing functional stenosis severity before and after percutaneous transluminal coronary angioplasty

Clinical Trial2020 Aug 8.

JOURNAL:Cardiovasc Drugs Ther. Article Link

Metformin Lowers Body Weight But Fails to Increase Insulin Sensitivity in Chronic Heart Failure Patients without Diabetes: a Randomized, Double-Blind, Placebo-Controlled Study

AH Larsen, H Wiggers, Niels Jessen et al. Keywords: HF; hyperinsulinemic euglycemic clamp; Insulin sensitivity; metformin

ABSTRACT

PURPOSE - The glucose-lowering drug metformin has recently been shown to reduce myocardial oxygen consumption and increase myocardial efficiency in chronic heart failure (HF) patients without diabetes. However, it remains to be established whether these beneficial myocardial effects are associated with metformin-induced alterations in whole-body insulin sensitivity and substrate metabolism.


METHODS - Eighteen HF patients with reduced ejection fraction and without diabetes (median age, 65 (interquartile range 55–68); ejection fraction 39 ± 6%; HbA1c 5.5 to 6.4%) were randomized to receive metformin (n= 10) or placebo (n= 8) for 3 months. We studied the effects of metformin on whole-body insulin sensitivity using a two-step hyperinsulinemic euglycemic clamp incorporating isotope-labeled tracers of glucose, palmitate, and urea. Substrate metabolism and skeletal muscle mitochondrial respiratory capacity were determined by indirect calorimetry and high-resolution respirometry, and body composition was assessed by bioelectrical impedance analysis. The primary outcome measure was change in insulin sensitivity.


RESULTS - Compared with placebo, metformin treatment lowered mean glycated hemoglobin levels (absolute mean difference, − 0.2%; 95% CI − 0.3 to 0.0;p= 0.03), reduced body weight (− 2.8 kg; 95% CI − 5.0 to − 0.6;p= 0.02), and increased fasting glucagon levels (3.2 pmol L−1; 95% CI 0.4 to 6.0;p= 0.03). No changes were observed in whole-body insulin sensitivity, endogenous glucose production, and peripheral glucose disposal or oxidation with metformin. Equally, resting energy expenditure, lipid and urea turnover, and skeletal muscle mitochondrial respiratory capacity remained unaltered.


CONCLUSION - Increased myocardial efficiency during metformin treatment is not mediated through improvements in insulin action in HF patients without diabetes.


CLINICAL TRIAL REGISTRATION - URL: https://clinicaltrials.gov. Unique identifier: NCT02810132. Date of registration: June 22, 2016.