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用于诱导胰岛分泌胰岛素的集成灌注与分离系统。

Integrated perfusion and separation systems for entrainment of insulin secretion from islets of Langerhans.

作者信息

Yi Lian, Wang Xue, Dhumpa Raghuram, Schrell Adrian M, Mukhitov Nikita, Roper Michael G

机构信息

Department of Chemistry and Biochemistry, Florida State University, 95 Chieftain Way, Tallahassee, FL 32306, USA.

出版信息

Lab Chip. 2015 Feb 7;15(3):823-32. doi: 10.1039/c4lc01360c.

Abstract

A microfluidic system was developed to investigate the entrainment of insulin secretion from islets of Langerhans to oscillatory glucose levels. A gravity-driven perfusion system was integrated with a microfluidic system to deliver sinusoidal glucose waveforms to the islet chamber. Automated manipulation of the height of the perfusion syringes allowed precise control of the ratio of two perfusion solutions into a chamber containing 1-10 islets. Insulin levels in the perfusate were measured using an online competitive electrophoretic immunoassay with a sampling period of 10 s. The insulin immunoassay had a detection limit of 3 nM with RSDs of calibration points ranging from 2-8%. At 11 mM glucose, insulin secretion from single islets was oscillatory with a period ranging from 3-6 min. Application of a small amplitude sinusoidal wave of glucose with a period of 5 or 10 min, shifted the period of the insulin oscillations to this forcing period. Exposing groups of 6-10 islets to a sinusoidal glucose wave synchronized their behavior, producing a coherent pulsatile insulin response from the population. These results demonstrate the feasibility of the developed system for the study of oscillatory insulin secretion and can be easily modified for investigating the dynamic nature of other hormones released from different cell types.

摘要

开发了一种微流体系统,以研究朗格汉斯胰岛胰岛素分泌对振荡葡萄糖水平的夹带作用。将重力驱动灌注系统与微流体系统集成,以向胰岛腔输送正弦葡萄糖波形。通过自动操纵灌注注射器的高度,可以精确控制两种灌注溶液进入含有1 - 10个胰岛的腔室的比例。使用在线竞争性电泳免疫测定法测量灌注液中的胰岛素水平,采样周期为10秒。胰岛素免疫测定的检测限为3 nM,校准点的相对标准偏差范围为2 - 8%。在11 mM葡萄糖浓度下,单个胰岛的胰岛素分泌呈振荡性,周期为3 - 6分钟。施加周期为5或10分钟的小幅度葡萄糖正弦波,可将胰岛素振荡周期转变为该强迫周期。将6 - 10个胰岛组暴露于正弦葡萄糖波可使它们的行为同步,从而使群体产生连贯的脉动胰岛素反应。这些结果证明了所开发系统用于研究振荡性胰岛素分泌的可行性,并且可以很容易地进行修改,以研究从不同细胞类型释放的其他激素的动态特性。

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