Key result
Increased arterial stiffness in youth was independently associated with reduced diastolic function, including a lower E/A ratio (1.76 vs 1.99), regardless of traditional cardiovascular risk factors.
Why the study?
Increased arterial stiffness is associated with diastolic dysfunction in adults, but data in youth are lacking.
Does increased arterial stiffness reduce diastolic function in youth with obesity and type 2 diabetes?
Cross-Sectional (n=612)
Does increased arterial stiffness reduce diastolic function in youth with obesity and type 2 diabetes?
Absolute Event Rate: 1.76% vs 1.99%
p-value: p=<0.01
Extends arterial stiffness-diastolic dysfunction link to youth; hypothesis-generating, should not yet change practice.
Background: Increased arterial stiffness is associated with diastolic dysfunction in adults. Data in youth are lacking, so we examined the impact of arterial stiffness on diastolic function in youth. Methods: We obtained diastolic function and augmentation index, pulse wave velocity, brachial artery distensibility, and carotid stiffness on 612 youth [10–24 years, 65% female, 38% normal weight, 36% obese, and 26% with type 2 diabetes mellitus (T2DM)]. Participants were classified as compliant (C) vs. stiff (S) arteries based on seven arterial stiffness parameters [Global Stiffness Index (GSI), S = GSI > 4). Mean differences in covariates were evaluated by Student's t -tests. A stepwise regression analysis was performed to determine if GSI was an independent predictor of diastolic function. Results: Lower diastolic function and more adverse cardiovascular disease (CVD) risk factors were present in the S group ( n = 67) than the C group ( n = 545) ( p < 0.001). Covariates that were associated with diastolic dysfunction were higher GSI, male sex, higher body mass index (BMI), and systolic blood pressure (SBP) z -score ( R 2 = 0.18 to 0.25; p ≤ 0.05). Conclusion: Adverse diastolic function is seen in youth with increased arterial stiffness independent of CVD risk factors. Interventions to improve arterial stiffness prior to clinical onset of diastolic dysfunction are needed to prevent development of heart failure.
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Madsen et al. (2021) conducted a cross-sectional in Obesity and Type 2 Diabetes (n=612). Increased arterial stiffness (Global Stiffness Index ≥ 4) vs. Compliant arteries (Global Stiffness Index < 4) was evaluated on Diastolic function (E/A ratio) (p=<0.01). Increased arterial stiffness in youth was independently associated with reduced diastolic function, including a lower E/A ratio (1.76 vs 1.99), regardless of traditional cardiovascular risk factors.
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