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激光多普勒:一种用于体内测量胰岛微血管血管运动的工具。

Laser Doppler: A Tool for Measuring Pancreatic Islet Microvascular Vasomotion In Vivo.

作者信息

Liu Mingming, Zhang Xiaoyan, Li Bingwei, Wang Bing, Wu Qingbin, Shang Fei, Li Ailing, Li Hongwei, Xiu Ruijuan

机构信息

Institute of Microcirculation, Chinese Academy of Medical Sciences & Peking Union Medical College.

Institute of Microcirculation, Chinese Academy of Medical Sciences & Peking Union Medical College;

出版信息

J Vis Exp. 2018 Mar 8(133):56028. doi: 10.3791/56028.

Abstract

As a functional status of microcirculation, microvascular vasomotion is important for the delivery of oxygen and nutrients and the removal of carbon dioxide and waste products. The impairment of microvascular vasomotion might be a crucial step in the development of microcirculation-related diseases. In addition, the highly vascularized pancreatic islet is adapted to support endocrine function. In this respect, it seems possible to infer that the functional status of pancreatic islet microvascular vasomotion might affect pancreatic islet function. Analyzing the pathological changes of the functional status of pancreatic islet microvascular vasomotion may be a feasible strategy to determine contributions that pancreatic islet microcirculation makes to related diseases, such as diabetes mellitus, pancreatitis, etc. Therefore, this protocol describes using a laser Doppler blood flow monitor to determine the functional status of pancreatic islet microvascular vasomotion, and to establish parameters (including average blood perfusion, amplitude, frequency, and relative velocity of pancreatic islet microvascular vasomotion) for evaluation of the microcirculatory functional status. In a streptozotocin-induced diabetic mouse model, we observed an impaired functional status of pancreatic islet microvascular vasomotion. In conclusion, this approach for assessing pancreatic islet microvascular vasomotion in vivo may reveal mechanisms relating to pancreatic islet diseases.

摘要

作为微循环的一种功能状态,微血管舒缩运动对于氧气和营养物质的输送以及二氧化碳和代谢废物的清除至关重要。微血管舒缩运动受损可能是微循环相关疾病发展过程中的关键步骤。此外,高度血管化的胰岛能够适应并支持内分泌功能。在这方面,可以推断胰岛微血管舒缩运动的功能状态可能会影响胰岛功能。分析胰岛微血管舒缩运动功能状态的病理变化可能是确定胰岛微循环对糖尿病、胰腺炎等相关疾病影响的一种可行策略。因此,本方案描述了使用激光多普勒血流监测仪来确定胰岛微血管舒缩运动的功能状态,并建立用于评估微循环功能状态的参数(包括胰岛微血管舒缩运动的平均血流灌注、幅度、频率和相对速度)。在链脲佐菌素诱导的糖尿病小鼠模型中,我们观察到胰岛微血管舒缩运动的功能状态受损。总之,这种体内评估胰岛微血管舒缩运动的方法可能揭示与胰岛疾病相关的机制。

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