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具有多个人工毛细血管单元的双室动力学模型。

Two compartment kinetic model with multiple artificial capillary units.

作者信息

Blaser J, Stone B B, Zinner S H

出版信息

J Antimicrob Chemother. 1985 Jan;15 Suppl A:131-7. doi: 10.1093/jac/15.suppl_a.131.

Abstract

A two compartment in-vitro model was designed to simulate human pharmacokinetics and to expose bacterial cultures to changing drug concentrations, thereby avoiding limitations of conventional antibiotic testing at constant drug levels. Serially placed bacterial compartments, representing extravascular infection sites, interface with a central compartment through artificial capillaries. Drug concentrations within the culture chambers closely mimic interstitial concentrations in vivo. Simultaneous first order elimination kinetics of two drugs with different half-lives were simulated to study antibacterial effects of drug combinations. This in-vitro model is an efficient tool for optimal dosage regimen design and the study of synergistic/antagonistic effects of antibiotic combinations.

摘要

设计了一种双室体外模型,以模拟人体药代动力学,并使细菌培养物暴露于不断变化的药物浓度下,从而避免传统抗生素测试在恒定药物水平下的局限性。连续放置的细菌室代表血管外感染部位,通过人工毛细血管与中央室相连。培养室内的药物浓度紧密模拟体内的间质浓度。模拟了两种具有不同半衰期的药物的同时一级消除动力学,以研究药物组合的抗菌效果。这种体外模型是优化给药方案设计以及研究抗生素组合的协同/拮抗作用的有效工具。

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