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哺乳动物疼痛模型的替代方法2:利用果蝇鉴定参与痛觉感受的新基因。

Alternatives to mammalian pain models 2: using Drosophila to identify novel genes involved in nociception.

作者信息

Caldwell Jason C, Tracey W Daniel

机构信息

Department of Anesthesiology, Duke University Medical Center, Durham, NC, USA.

出版信息

Methods Mol Biol. 2010;617:19-29. doi: 10.1007/978-1-60327-323-7_2.

Abstract

Identification of the molecules involved in nociception is fundamental to our understanding of pain. Drosophila, with its short generation time, powerful genetics and capacity for rapid, genome-wide mutagenesis, represents an ideal invertebrate model organism to dissect nociception. The fly has already been used to identify factors that are involved in other sensory systems such as vision, chemosensation, and audition. Thus, the tiny fruit fly is a viable alternative to mammalian model organisms. Here we present a brief primer on techniques used in screening for thermal and/or mechanical nociception mutants using Drosophila.

摘要

确定参与伤害感受的分子对于我们理解疼痛至关重要。果蝇具有较短的世代时间、强大的遗传学以及进行快速全基因组诱变的能力,是剖析伤害感受的理想无脊椎动物模式生物。果蝇已被用于鉴定参与视觉、化学感受和听觉等其他感觉系统的因子。因此,小小的果蝇是哺乳动物模式生物的可行替代物。在此,我们简要介绍利用果蝇筛选热和/或机械伤害感受突变体所使用的技术。

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