首页> 美国卫生研究院文献>Journal of Visualized Experiments : JoVE >Combined Intravital Microscopy and Contrast-enhanced Ultrasonography of the Mouse Hindlimb to Study Insulin-induced Vasodilation and Muscle Perfusion
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Combined Intravital Microscopy and Contrast-enhanced Ultrasonography of the Mouse Hindlimb to Study Insulin-induced Vasodilation and Muscle Perfusion

机译:小鼠后肢的活体显微镜和对比增强超声检查相结合以研究胰岛素诱导的血管舒张和肌肉灌注

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摘要

It has been demonstrated that insulin's vascular actions contribute to regulation of insulin sensitivity. Insulin's effects on muscle perfusion regulate postprandial delivery of nutrients and hormones to insulin-sensitive tissues. We here describe a technique for combining intravital microscopy (IVM) and contrast-enhanced ultrasonography (CEUS) of the adductor compartment of the mouse hindlimb to simultaneously visualize muscle resistance arteries and perfusion of the microcirculation in vivo. Simultaneously assessing insulin's effect at multiple levels of the vascular tree is important to study relationships between insulin's multiple vasoactive effects and muscle perfusion. Experiments in this study were performed in mice. First, the tail vein cannula is inserted for the infusion of anesthesia, vasoactive compounds and ultrasound contrast agent (lipid-encapsulated microbubbles). Second, a small incision is made in the groin area to expose the arterial tree of the adductor muscle compartment. The ultrasound probe is then positioned at the contralateral upper hindlimb to view the muscles in cross-section. To assess baseline parameters, the arterial diameter is assessed and microbubbles are subsequently infused at a constant rate to estimate muscle blood flow and microvascular blood volume (MBV). When applied before and during a hyperinsulinemic-euglycemic clamp, combined IVM and CEUS allow assessment of insulin-induced changes of arterial diameter, microvascular muscle perfusion and whole-body insulin sensitivity. Moreover, the temporal relationship between responses of the microcirculation and the resistance arteries to insulin can be quantified. It is also possible to follow-up the mice longitudinally in time, making it a valuable tool to study changes in vascular and whole-body insulin sensitivity.
机译:已经证明胰岛素的血管作用有助于调节胰岛素敏感性。胰岛素对肌肉灌注的影响调节餐后营养物质和激素向胰岛素敏感组织的输送。我们在这里描述了一种结合了活体显微镜检查(IVM)和小鼠后肢内收肌室造影剂超声造影技术(CEUS)的技术,可同时可视化肌肉阻力动脉和体内微循环的灌注。同时评估胰岛素在血管树多个层面上的作用对于研究胰岛素的多种血管活性作用与肌肉灌注之间的关系非常重要。本研究的实验是在小鼠中进行的。首先,插入尾静脉套管以注入麻醉剂,血管活性化合物和超声造影剂(脂质包裹的微泡)。第二,在腹股沟区域做一个小切口,露出内收肌壁的动脉树。然后将超声探头放置在对侧上后肢处,以查看横断面的肌肉。为了评估基线参数,评估动脉直径,随后以恒定速率注入微泡,以估计肌肉血流量和微血管血容量(MBV)。当在高胰岛素-正常血糖钳夹之前和期间应用时,IVM和CEUS的组合可以评估胰岛素引起的动脉直径,微血管肌肉灌注和全身胰岛素敏感性的变化。而且,可以定量微循环的响应与胰岛素抵抗动脉之间的时间关系。还可以及时对小鼠进行纵向随访,使其成为研究血管和全身胰岛素敏感性变化的有价值的工具。

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