Identification of Gap Junction Blockers Using Automated Fluorescence Microscopy Imaging

Author:

Li Zhuyin1,Yan Yongping2,Powers Elaine A.3,Ying Xiaoyou4,Janjua Khurram2,Garyantes Tina2,Baron Bruce3

Affiliation:

1. Lead Discovery Technology, Lead Generation,

2. Lead Discovery Technology, Lead Generation

3. CNS Disease Group

4. Bioimaging/Pathology/DSE, Lead Optimization, Aventis Pharmaceutical, Bridgewater, NJ

Abstract

Gap junctions coordinate electrical signals and facilitate metabolic synchronization between cells. In this study, the authors have developed a novel assay for the identification of gap junction blockers using fluorescence microscopy imaging-based high-content screening technology. In the assay, the communication between neighboring cells through gap junctions was measured by following the redistribution of a fluorescent marker. The movement of calcein dye from dye-loaded donor cells to dye-free acceptor cells through gap junctions overexpressed on cell surface membranes was monitored using automated fluorescence microscopy imaging in a high-throughput compatible format. The fluorescence imaging technology consisted of automated focusing, image acquisition, image processing, and data mining. The authors have successfully performed a high-throughput screening of a 486,000- compound program with this assay, and they were able to identify false positives without additional experiments. Selective and pharmacologically interesting compounds were identified for further optimization. ( Journal of Biomolecular Screening 2003:489-499)

Publisher

Elsevier BV

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