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斑马鱼高内涵和高通量技术的进展。

Advances in zebrafish high content and high throughput technologies.

作者信息

Miscevic Filip, Rotstein Ori, Wen Xiao-Yan

机构信息

Zebrafish Centre for Advanced Drug Discovery, Keenan Research Centre, Li Ka Shing Knowledge Institute, St. Michael's Hospital, Toronto, Ontario, Canada.

出版信息

Comb Chem High Throughput Screen. 2012 Aug;15(7):515-21. doi: 10.2174/138620712801619140.

Abstract

The zebrafish has emerged as an excellent transitional screening model system between cell-based assays, which are rapid and inexpensive but have limited physiological relevance, and higher vertebrate models, which have better physiological relevance, but are more time-consuming and expensive to deploy. As vertebrates, zebrafish maintain significant evolutionary proximity to humans and have been validated as robust models for drug research, studies of mechanism and behavioral genetics. Unlike higher vertebrate models, zebrafish are well-suited to high-throughput applications owing to their high fecundity, rapid extrauterine development and transparency during organogenesis enabling in vivo labeling and imaging. Recent advances have been made in automating high content and high-throughput zebrafish screens, with the goal of developing fully automated drug screening platforms. The application and continued development of these technologies holds potential clinical significance in drug discovery and elucidating disease mechanisms.

摘要

斑马鱼已成为一种出色的过渡性筛选模型系统,它介于基于细胞的检测方法和高等脊椎动物模型之间。基于细胞的检测方法快速且成本低廉,但生理相关性有限;而高等脊椎动物模型具有更好的生理相关性,但部署起来更耗时且成本更高。作为脊椎动物,斑马鱼与人类在进化上保持着显著的亲缘关系,并且已被确认为药物研究、机制研究和行为遗传学研究的可靠模型。与高等脊椎动物模型不同,斑马鱼因其高繁殖力、宫外快速发育以及在器官发生过程中的透明度,适合进行体内标记和成像,因而非常适合高通量应用。在自动化高内涵和高通量斑马鱼筛选方面已取得了进展,目标是开发出完全自动化的药物筛选平台。这些技术的应用和持续发展在药物发现和阐明疾病机制方面具有潜在的临床意义。

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