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用于代谢物研究的含有人微粒体和肝细胞的微反应器微流控系统。

Microreactor microfluidic systems with human microsomes and hepatocytes for use in metabolite studies.

作者信息

Zguris Jeanna C, Itle Laura J, Hayes Daniel, Pishko Michael V

机构信息

Department of Chemical Engineering, The Pennsylvania State University, University Park, PA 16802-4420, USA.

出版信息

Biomed Microdevices. 2005 Jun;7(2):117-25. doi: 10.1007/s10544-005-1589-9.

Abstract

In the area of drug discovery, high-speed synthesis has increased the number of drug candidates produced. These potential drugs need to be evaluated for their adsorption, distribution, metabolism, elimination, and toxicology (ADMET) properties as early in the drug development stage as possible. Previously, a potential drug's ADMET properties have been found out by using monolayer cell cultures and live animals. These methods can be costly, time-intensive, and impractical for screening the large amount of potential drugs created by combinatorial chemistry. A quick, small, inexpensive, and highly parallel device would be desirable to determine a drug candidate's properties (i.e., metabolism of the drug). Here we fabricate a microfluidic device entrapping human microsomes within poly(ethylene) glycol hydrogels thereby generating an in situ microreactor to assess a drug candidate's metabolic properties that can be coupled to analysis equipment. We show that microsomes can be entrapped without the loss of enzymatic activity during photopolymerization. Additionally, a microreactor utilizing hepatocytes was also created for comparison with the microsome microreactor.

摘要

在药物发现领域,高速合成增加了所产生的候选药物数量。这些潜在药物需要在药物开发阶段尽早对其吸收、分布、代谢、排泄和毒理学(ADMET)特性进行评估。以前,一种潜在药物的ADMET特性是通过使用单层细胞培养和活体动物来确定的。这些方法成本高、耗时,并且对于筛选由组合化学产生的大量潜在药物而言不切实际。一种快速、小型、廉价且高度并行的装置将有助于确定候选药物的特性(即药物的代谢)。在此,我们制造了一种微流控装置,将人微粒体包裹在聚乙二醇水凝胶中,从而产生一个原位微反应器,以评估可与分析设备联用的候选药物的代谢特性。我们表明,在光聚合过程中微粒体能够被包裹而不会损失酶活性。此外,还创建了一个利用肝细胞的微反应器,以便与微粒体微反应器进行比较。

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