首页> 外文期刊>JALA: Journal of the Association for Laboratory Automation >The Phospholipid Vesicle-Based Drug Permeability Assay: 5. Development Toward an Automated Procedure for High-Throughput Permeability Screening
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The Phospholipid Vesicle-Based Drug Permeability Assay: 5. Development Toward an Automated Procedure for High-Throughput Permeability Screening

机译:基于磷脂囊泡的药物渗透性测定:5.开发用于高通量渗透性筛选的自动化程序

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摘要

In vitro screening for oral absorption has become an essential part of drug discovery and development. Recently, a new phospholipid vesicle-based permeation assay was developed which has shown to satisfyingly predict passive absorption of drugs in humans. The purpose of the current study was to investigate whether the assay may be further developed into a high-throughput tool by automating its most time-consuming steps. The following challenges were addressed: (I) to design, build, and test a heat-sealing machine for mounting of the desired type of filter support onto both single wells and 24-well titer plate inserts and (2) to transfer the permeability assay to a robotic workstation with attached ultraviolet (UV) reader. The workstation is able to pipette and transport both plates and filter inserts and perform on-line photometric quantification of the amount of drug permeated. To enable the robot to move single (Standard Transwell; Corning Inc, Lowell, MA) filter inserts, an extension of the gripping arm was designed, built, and tested. Furthermore, in an alternative approach 24-well filter plates (Millicell; Millipore, Billerica, MA) were used instead of single filter inserts. The latter turned out to be more suitable in terms of error-free high-throughput robotic handling. The permeability values of drugs gained by the two automated procedures were compared with those measured by manual handling of the assay. Only neglectable differences in permeability values were seen.
机译:口服吸收的体外筛选已成为药物发现和开发的重要组成部分。最近,开发了一种新的基于磷脂囊泡的渗透测定法,该测定法可以令人满意地预测人体内药物的被动吸收。本研究的目的是调查是否可以通过自动执行最耗时的步骤来将其进一步发展为高通量工具。解决了以下挑战:(I)设计,建造和测试用于将所需类型的过滤器支架安装到单孔和24孔滴定板插入件上的热封机,以及(2)进行渗透性测定到装有紫外线(UV)阅读器的机器人工作站。该工作站能够移液并运输板和滤芯,并对渗透的药物量进行在线光度定量。为使机器人能够移动单个(标准Transwell;康宁公司,马萨诸塞州洛厄尔)滤芯,设计,制造和测试了抓臂的延伸部分。此外,在另一种方法中,使用24孔滤板(Millicell; Millipore,Billerica,MA)代替单个滤芯。事实证明,后者在无错误的高通量机器人处理方面更合适。将通过两种自动化程序获得的药物的渗透率值与通过手动处理测定法测得的渗透率值进行比较。渗透率值仅可忽略不计。

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