Key result
A high-fat diet supplemented with fructose in rhesus macaques induced an initial compensatory increase in capillary blood volume over 18 months that abruptly decreased at 24 months.
In a primate model of diet-induced obesity, an initial compensatory increase in skeletal muscle capillary blood volume and endothelial vasodilators is eventually lost, correlating with worsening insulin resistance.
Should not change clinical practice; leaves open whether microvascular decompensation drives insulin resistance progression in humans.
The inability of insulin to increase skeletal muscle capillary blood volume (CBV) reduces glucose uptake in insulin resistance (IR). We hypothesized that abnormalities in endothelial-derived vasodilator pathways are temporally associated with the development of IR and an impaired ability to increase skeletal muscle CBV. A comprehensive metabolic and vascular screening assessment was performed on 10 adult rhesus macaques at baseline and every 4-6 months for 2 years after starting a high-fat diet supplemented with fructose. Diet changes resulted in an 80% increase in truncal fat by 4 months. Hyperinsulinemia and decreased glucose utilization were observed from 4 to 18 months. At 24 months, pancreatic secretory function and the glucose utilization rate declined. CBV at rest and during an intravenous glucose tolerance test demonstrated a sustained increase from 4 to 18 months and then abruptly fell at 24 months. Nitric oxide bioavailability progressively decreased over 2 years. Conversely, endothelial-derived vasodilators progressively increased over 18 months and then abruptly decreased at 24 months in concert with the CBV. The increase in basal and glucose-mediated CBV early in IR may represent a compensatory response through endothelial-derived vasodilator pathways. The inability to sustain a vascular compensatory response limits glucose-mediated increases in CBV, which correlates with the severity of IR.
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Chadderdon et al. (2016) studied Obesity-related insulin resistance (n=10). High-fat diet supplemented with fructose vs. Baseline was evaluated on Skeletal muscle capillary blood volume (CBV) and endothelial-derived vasodilators. A high-fat diet supplemented with fructose in rhesus macaques induced an initial compensatory increase in capillary blood volume over 18 months that abruptly decreased at 24 months.
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