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转基因动物技术:基因分型和表型分析的替代方法

Transgenic animal technology: alternatives in genotyping and phenotyping.

作者信息

Pinkert Carl A

机构信息

University of Rochester Medical Center, Department of Pathology and Laboratory Medicine, Center for Aging and Developmental Biology, Box 645, Rochester, New York 14642-8645, USA.

出版信息

Comp Med. 2003 Apr;53(2):126-39.

Abstract

Over the past decade, breakthrough technologies in transgenic animal technology and functional genomics have played a central role in the explosive growth of rodent modeling and in scientific innovation. Various noninvasive alternatives to routine surgical biopsy have been described for genotypic and phenotypic analyses of laboratory animals. A number of options are available to refine or replace potentially painful and invasive procedures ranging from tissue biopsies (including tail biopsies and toe docking) to several blood sampling techniques. Unfortunately, adoption of many non- or minimally invasive alternatives has proven difficult on a number of fronts ranging from historical reservations to procedural expectations and actual experimental productivity. Similarly, a variety of phenotyping considerations have addressed throughput efficiencies and the health and well being of research animals. From an animal welfare perspective, marked increases in laboratory animal populations have accompanied rapid advancements spanning the life sciences. As described for rodent modeling, but with applications across many laboratory animal species, diverse procedural refinements are available that will readily aid in the analysis of whole animal models. Ultimately, non-invasive technologies and complementary refinements have bearing on the quality and reproducibility of data that are reported, as well as of critical importance to the well being and ethical management of animals at all developmental stages: from fetal existence, to the neonatal period, and on through adulthood.

摘要

在过去十年中,转基因动物技术和功能基因组学方面的突破性技术在啮齿动物模型的迅猛发展和科学创新中发挥了核心作用。已描述了各种用于实验动物基因型和表型分析的常规手术活检的非侵入性替代方法。有多种选择可用于改进或替代从组织活检(包括尾尖活检和断趾)到几种采血技术等潜在痛苦和侵入性的程序。不幸的是,从历史保留意见到程序期望和实际实验效率等多个方面来看,采用许多非侵入性或微创性替代方法都已证明存在困难。同样,各种表型分析方面的考虑涉及通量效率以及实验动物的健康和福祉。从动物福利的角度来看,随着生命科学的迅速发展,实验动物数量显著增加。正如针对啮齿动物模型所描述的那样,但这些应用也适用于许多实验动物物种,有多种程序改进方法可随时帮助分析全动物模型。最终,非侵入性技术和互补性改进对所报告数据的质量和可重复性有影响,并且对于动物在从胎儿期到新生儿期以及成年期的所有发育阶段的福祉和伦理管理至关重要。

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