Shao Jia-qing, Gu Ping, DU Hong, Lu Bin, Peng Li, Li Jie, Wang Yan-yan, Zhao Ming, Wang Jian
Department of Endocrinology and Metabolism, Nanjing General Hospital of Nanjing Military Command, Nanjing 210002, China.
Zhonghua Yi Xue Za Zhi. 2010 Jan 12;90(2):119-22.
To set up islet perifusion system, a new method to evaluate first-phase insulin secretory function of beta-cell in vitro.
Islet perifusion system was set up, including perifusion framework, waterbath system, infusion pump system, afferent system, islet capsule, and efferent system. Kinetics of insulin release in vitro was studied using the perifusion system. Pancreatic islets were isolated as mentioned above and used freshly after isolation. Size-matched 50 islets were placed in each column. Then the columns were gently closed with the top adaptors, immersed in vertical position and controlled temperature in the water bath at 37 degrees C. The perifusion medium was maintained at 37 degrees C in a water bath. And all columns were perifused in parallel at a flow rate of 0.5 ml/min with KRBB (2.8 mmol/L glucose) at 37 degrees C. After 60 min static incubation with KRBB (2.8 mmol/L glucose), the islets were stimulated in the continuous presence of a high concentration of 16.7 mmol/L glucose. Samples were collected every 20-second until 2 min, every 1 min until 5 min, thereafter every 5 min until 30 min. Samples were immediately stocked at -80 degrees C until further analysis. Insulin concentration was measured with an insulin RIA kit.
An Islet perifusion system was established successfully, and kinetic curves of insulin secretion of db/m and db/db mice were traced out.
An established islet perifusion system, could be widely used to evaluate insulin secretory function of beta-cell in in vitro research of diabetes.
建立胰岛灌流系统,一种体外评估β细胞第一相胰岛素分泌功能的新方法。
建立胰岛灌流系统,包括灌流框架、水浴系统、输液泵系统、输入系统、胰岛囊和输出系统。使用该灌流系统研究体外胰岛素释放动力学。按上述方法分离胰岛,分离后立即新鲜使用。将大小匹配的50个胰岛放入每根柱中。然后用顶部适配器轻轻封闭柱子,垂直浸入水浴中,将水浴温度控制在37℃。灌流培养基在水浴中保持在37℃。所有柱子在37℃下以0.5ml/min的流速用KRBB(2.8mmol/L葡萄糖)并行灌流。在与KRBB(2.8mmol/L葡萄糖)静态孵育60分钟后,在持续存在高浓度16.7mmol/L葡萄糖的情况下刺激胰岛。每隔20秒收集一次样品,直至2分钟,之后每隔1分钟收集一次,直至5分钟,此后每隔5分钟收集一次,直至30分钟。样品立即储存在-80℃直至进一步分析。用胰岛素放射免疫分析试剂盒测量胰岛素浓度。
成功建立了胰岛灌流系统,并描绘出db/m和db/db小鼠胰岛素分泌的动力学曲线。
建立的胰岛灌流系统可广泛用于糖尿病体外研究中评估β细胞的胰岛素分泌功能。