Augmented adrenergic vasoconstriction in hypertensive diabetic obese Zucker rats

DW Stepp, JC Frisbee - American Journal of Physiology …, 2002 - journals.physiology.org
DW Stepp, JC Frisbee
American Journal of Physiology-Heart and Circulatory Physiology, 2002journals.physiology.org
This study examined skeletal muscle microvessel reactivity to constrictor stimuli in obese
(OZR) versus lean Zucker rats (LZR). Gracilis arteries from both rat groups were isolated,
cannulated with glass micropipettes, and viewed via television microscopy. Changes in
vessel diameter were measured with a video micrometer. Arterial constriction to
norepinephrine was elevated in OZR versus LZR, although vasoconstrictor reactivity to
endothelin and angiotensin II was unaltered. Differences in reactivity between vessels of …
This study examined skeletal muscle microvessel reactivity to constrictor stimuli in obese (OZR) versus lean Zucker rats (LZR). Gracilis arteries from both rat groups were isolated, cannulated with glass micropipettes, and viewed via television microscopy. Changes in vessel diameter were measured with a video micrometer. Arterial constriction to norepinephrine was elevated in OZR versus LZR, although vasoconstrictor reactivity to endothelin and angiotensin II was unaltered. Differences in reactivity between vessels of LZR and OZR were not explained by the loss of either endothelial nitric oxide synthase or β-adrenergic receptor function. Reactivity of in situ cremasteric arterioles of OZR to norepinephrine was elevated versus LZR. Treatment with prazosin increased the diameter of in vivo gracilis arteries of OZR to levels determined in LZR and also normalized blood pressure in OZR. These results suggest that the constrictor reactivity of skeletal muscle microvessels in OZR is heightened in response to α-adrenergic stimuli and that development of diabetes in OZR may be associated with impaired skeletal muscle perfusion and hypertension due to microvessel hyperreactivity in response to sympathetic stimulation.
American Physiological Society