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肥胖Zucker大鼠骨骼肌灌注受损。

Impaired skeletal muscle perfusion in obese Zucker rats.

作者信息

Frisbee Jefferson C

机构信息

Dept. of Physiology, Medical College of Wisconsin, 8701 Watertown Plank Rd., Milwaukee, WI 53226, USA.

出版信息

Am J Physiol Regul Integr Comp Physiol. 2003 Nov;285(5):R1124-34. doi: 10.1152/ajpregu.00239.2003. Epub 2003 Jul 10.

Abstract

Skeletal muscle arterioles from obese Zucker rats (OZR) exhibit oxidant stress-based alterations in reactivity, enhanced alpha-adrenergic constriction, and reduced distensibility vs. microvessels of lean Zucker rats (LZR). The present study determined the impact of these alterations for perfusion and performance of in situ skeletal muscle during periods of elevated metabolic demand. During bouts of isometric tetanic contractions, fatigue of in situ gastrocnemius muscle of OZR was increased vs. LZR; this was associated with impaired active hyperemia. In OZR, vasoactive responses of skeletal muscle arterioles from the contralateral gracilis muscle were impaired, due in part to elevated oxidant tone; reactivity was improved after treatment with polyethylene glycol-superoxide dismutase (PEGSOD). Arterioles of OZR also exhibited increased alpha-adrenergic sensitivity, which was abolished by treatment with phentolamine (10-5 M). Intravenous infusion of phentolamine (10 mg/kg) or PEG-SOD (2,000 U/kg) in OZR altered neither fatigue rates nor active hyperemia from untreated levels; however, combined infusion improved performance and hyperemia, although not to levels in LZR. Microvessel density in the contralateral gastrocnemius muscle, determined via histological analyses, was reduced by approximately 25% in OZR vs. LZR, while individual arterioles from the contralateral gracilis muscle demonstrated reduced distensibility. These data suggest that altered arteriolar reactivity contributes to reduced muscle performance and active hyperemia in OZR. Further, despite pharmacological improvements in arteriolar reactivity, reduced skeletal muscle microvessel density and arteriolar distensibility also contribute substantially to reduced active hyperemia and potentially to impaired muscle performance.

摘要

与瘦素 Zucker 大鼠(LZR)的微血管相比,肥胖 Zucker 大鼠(OZR)的骨骼肌小动脉表现出基于氧化应激的反应性改变、增强的α-肾上腺素能收缩以及降低的扩张性。本研究确定了这些改变对代谢需求增加期间原位骨骼肌灌注和功能的影响。在等长强直收缩期间,OZR 原位腓肠肌的疲劳程度相对于 LZR 有所增加;这与主动充血受损有关。在 OZR 中,对侧股薄肌的骨骼肌小动脉的血管活性反应受损,部分原因是氧化应激增强;用聚乙二醇超氧化物歧化酶(PEGSOD)治疗后反应性得到改善。OZR 的小动脉还表现出α-肾上腺素能敏感性增加,用酚妥拉明(10^-5 M)治疗可消除这种增加。在 OZR 中静脉注射酚妥拉明(10 mg/kg)或 PEG-SOD(2000 U/kg),疲劳率和主动充血均未从未治疗水平改变;然而,联合输注改善了功能和充血,尽管未达到 LZR 的水平。通过组织学分析确定,与 LZR 相比,OZR 对侧腓肠肌的微血管密度降低了约 25%,而对侧股薄肌的单个小动脉显示出扩张性降低。这些数据表明,小动脉反应性改变导致 OZR 肌肉功能和主动充血降低。此外,尽管小动脉反应性在药理学上有所改善,但骨骼肌微血管密度降低和小动脉扩张性降低也极大地导致了主动充血减少,并可能导致肌肉功能受损。

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