Development of a dynamic model for real-time determination of membrane-bound acetylcholinesterase activity upon perfusion with inhibitors and reactivators

被引:22
作者
Eckert, Saskia
Eyer, Peter
Mueckter, Harald
Worek, Franz
机构
[1] Univ Munich, Walther Straub Inst Pharmacol & Toxicol, D-80336 Munich, Germany
[2] Bundeswehr Inst Pharmacol & Toxicol, D-80937 Munich, Germany
关键词
acetylcholinesterase; bioreactor; perfusion; paraoxon; obidoxime; real-time determination;
D O I
10.1016/j.bcp.2006.04.016
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
Quantitative predictions of the course of acetylcholinesterase (AChE) activity, following interference of inhibitors and reactivators, are usually obscured by the time-dependent changes of all reaction partners. To mimic these dynamics we developed an in vitro model. Immobilized human erythrocyte ghosts in a bioreactor were continuously perfused while AChE activity was monitored by a modified Ellman method. The perfusion system consisted of two HPLC pumps with integrated quaternary low-pressure gradient formers that were programmed by a computer using commercial HPLC software. The combined eluates passed a particle filter (Millex((R))-GS, 0.22 mu m) containing a thin layer of erythrocytes that was immersed in a temperature-controlled water bath. The effluent passed a flow cell in a UV-vis detector, the signal of which was digitized, written to disc and calculated with curve fitting programs. AChE activity decreased by 3.4% within 2.5 h. The day-to-day variation of the freshly prepared bioreactor using the same enzyme source was 3.3%. Residual activity of 0.2% marked the limit of quantification. Following perfusion with paraoxon, pseudo first-order rate constants of inhibition were established that did not differ from results obtained in conventional assays. The same holds true for reactivation with obidoxime. The set-up presented allows freely programmable time-dependent changes of up to eight solvents to mimic pharmacokinetic profiles without accumulation of products. Due to some hysteresis in the system, reaction half-lives should be > 3 min and concentration changes in critical compounds should exceed half-lives of 5 min. otherwise, the system offers much flexibility and operates with high precision. (c) 2006 Elsevier Inc. All rights reserved.
引用
收藏
页码:358 / 365
页数:8
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