Key result
Local heating of one arm significantly prevented the hyperglycemia-induced decline in flow-mediated dilation compared with the nonheated arm in both healthy and diabetic subjects (P<0.01).
Why the study?
Does local heating to increase blood flow and shear rate prevent hyperglycemia-induced endothelial dysfunction in healthy subjects and patients with type 2 diabetes?
Does local heating to increase blood flow and shear rate prevent hyperglycemia-induced endothelial dysfunction in healthy subjects and patients with type 2 diabetes?
p-value: p=<0.01
Nonmetabolically driven elevation in blood flow and shear rate via local heating prevents hyperglycemia-induced decline in conduit artery endothelial function in both healthy volunteers and T2DM patients.
May attenuate hyperglycemia-induced endothelial dysfunction via shear; leaves open prospective trials before clinical consideration.
Hyperglycemia, commonly present after a meal, causes transient impairment in endothelial function. We examined whether increases in blood flow (BF) protect against the hyperglycemia-mediated decrease in endothelial function in healthy subjects and patients with type 2 diabetes mellitus (T2DM). Ten healthy subjects and 10 age- and sex-matched patients with T2DM underwent simultaneous bilateral assessment of brachial artery endothelial function by means of flow-mediated dilation (FMD) using high-resolution echo-Doppler. FMD was examined before and 60, 120, and 150 min after a 75-g oral glucose challenge. We unilaterally manipulated BF by heating one arm between minute 30 and minute 60. Oral glucose administration caused a statistically significant, transient increase in blood glucose in both groups (P < 0.001). Forearm skin temperature, brachial artery BF, and shear rate significantly increased in the heated arm (P < 0.001), and to a greater extent compared with the nonheated arm in both groups (interaction effect P < 0.001). The glucose load caused a transient decrease in FMD% (P < 0.05), whereas heating significantly prevented the decline (interaction effect P < 0.01). Also, when correcting for changes in diameter and shear rate, we found that the hyperglycemia-induced decrease in FMD can be prevented by local heating (P < 0.05). These effects on FMD were observed in both groups. Our data indicate that nonmetabolically driven elevation in BF and shear rate can similarly prevent the hyperglycemia-induced decline in conduit artery endothelial function in healthy volunteers and in patients with type 2 diabetes. Additional research is warranted to confirm that other interventions that increase BF and shear rate equally protect the endothelium when challenged by hyperglycemia.
No takes yet. Share an insight, caveat, or question.
Greyling et al. (2015) studied Type 2 diabetes mellitus and healthy subjects (n=20). Local heating of one arm vs. Nonheated arm was evaluated on Flow-mediated dilation (FMD%) (p=<0.01). Local heating of one arm significantly prevented the hyperglycemia-induced decline in flow-mediated dilation compared with the nonheated arm in both healthy and diabetic subjects (P<0.01).
Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context: