Fang Q, Shi X T, Sun Y Q, Fang Z L
Shenyang Pharmaceutical University, China.
Anal Chem. 1997 Sep 1;69(17):3570-7. doi: 10.1021/ac970324e.
A novel flow injection on-line microdialysis system for in vivo monitoring of glucose in subcutaneous tissue fluid and blood is described. An implantable loop-type microdialysis probe was used for subcutaneous sampling, and a flow-through microdialyzer was used for intravenous sampling by pumping of the blood from the tested rabbit through the microdialyzer located outside the living system at a flow rate of 10 microL/min. The perfusion rate of the dialysate was 20 microL/min. The glucose in the dialysate was detected on-line with a flow injection chemiluminescence system after passing through an immobilized glucose oxidase reactor. The calibration of the detector system (including reactor) and monitoring of baseline drifts were performed simultaneously to improve the reliability of the monitoring process. The dialysate sample volume was 20 microL, and the sample throughout was 28 h-1. The variation of glucose level in subcutaneous tissue fluid and blood of the rabbits was monitored after the administration of glucose or insulin to demonstrate the favorable resolution and reliability of the system for in vivo on-line monitoring.
描述了一种用于体内监测皮下组织液和血液中葡萄糖的新型流动注射在线微透析系统。使用可植入的环形微透析探头进行皮下采样,并通过以10微升/分钟的流速将受试兔的血液泵入微透析器(位于活体系统外部),使用流通式微透析器进行静脉采样。透析液的灌注速率为20微升/分钟。透析液中的葡萄糖在通过固定化葡萄糖氧化酶反应器后,用流动注射化学发光系统进行在线检测。同时进行检测系统(包括反应器)的校准和基线漂移监测,以提高监测过程的可靠性。透析液样本体积为20微升,样本通量为28小时-1。在给予葡萄糖或胰岛素后,监测兔皮下组织液和血液中葡萄糖水平的变化,以证明该系统用于体内在线监测具有良好的分辨率和可靠性。