Key result
Type 2 diabetes was associated with increased central and peripheral artery stiffness, including higher CF-PWV (P<0.001), CR-PWV (P=0.012), and CA-PWV (P=0.016) compared to matched healthy controls.
Why the study?
Is type 2 diabetes associated with alterations in central and peripheral arterial stiffness (PWV and AIx) in a Chinese population?
Case-Control (n=158)
Is type 2 diabetes associated with alterations in central and peripheral arterial stiffness (PWV and AIx) in a Chinese population?
p-value: p=<0.001
Type 2 diabetes is associated with increased central and peripheral arterial stiffness, but not an increased augmentation index, in a Chinese population.
Arterial stiffness assessment may aid risk stratification in type 2 diabetes; leaves open causal links and outcome prediction in Chinese cohorts.
Background: Patients with type 2 diabetes have increased stiffness of central elastic arteries. However, whether peripheral muscular artery stiffness is equally affected by the disease remains sparsely examined. Moreover, the association between pulse wave velocity (PWV) and augmentation index (AIx) in diabetes is poorly understood. Hypothesis: Type 2 diabetes is associated with the alterations in arterial stiffness (PWV and AIx) in a community-based population. Methods: A total of 79 Chinese patients with type 2 diabetes and 79 sex-, age- (±3 years), and body mass index- (±2 kg/m2) matched healthy controls were studied. Carotid-femoral pulse wave velocity (CF-PWV), carotid-radial pulse wave velocity (CR-PWV), and carotid-ankle pulse wave velocity (CA-PWV) were calculated from tonometry waveforms and body surface measurements, whereas AIx was assessed using pulse wave analyses. Results: In univariate analysis, patients with type 2 diabetes showed increased CF-PWV (P < 0.001), CR-PWV (P = 0.012), and CA-PWV (P = 0.016), and lower AIx (P = 0.017) than the control group. In multiple linear regression models adjusting for covariates, type 2 diabetes remained a significant determinant of CF-PWV. Fasting glucose was associated with CR-PWV but was not related to CA-PWV or AIx. Conclusions: Our findings suggest that patients with type 2 diabetes have increased central and peripheral artery stiffness, but preserved AIx compared to controls. Diabetes was a predictor of central artery stiffness, and glucose was a determinant of peripheral artery stiffness. © 2011 Wiley Periodicals, Inc. This work was supported by a grant from the National Nature Science Foundation of China (30872713), Beijing Natural Science Foundation (7082083), and is a key project of the Capital Development Foundation (2009–2038) of Dr. Ping Ye. The authors have no other funding, financial relationships, or conflicts of interest to disclose. Dr. Zhang and Dr. Bai contributed equally to this work.
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Zhang et al. (2011) conducted a case-control in Type 2 diabetes (n=158). Type 2 diabetes vs. Healthy controls was evaluated on Carotid-femoral pulse wave velocity (CF-PWV) (p=<0.001). Type 2 diabetes was associated with increased central and peripheral artery stiffness, including higher CF-PWV (P<0.001), CR-PWV (P=0.012), and CA-PWV (P=0.016) compared to matched healthy controls.
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