A simplified design for the C. elegans lifespan machine.

Mark Abbott, Stephen A Banse, Ilija Melentijevic, Cody M Jarrett, Jonathan St Ange, Christine A Sedore, Ron Falkowski, Benjamin W Blue, Anna L Coleman-Hulbert, Erik Johnson, Max Guo, Gordon J Lithgow, Patrick C Phillips, Monica Driscoll
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引用次数: 3

Abstract

Caenorhabditis elegans (C. elegans) lifespan assays constitute a broadly used approach for investigating the fundamental biology of longevity. Traditional C. elegans lifespan assays require labor-intensive microscopic monitoring of individual animals to evaluate life/death over a period of weeks, making large-scale high throughput studies impractical. The lifespan machine developed by Stroustrup et al. (2013) adapted flatbed scanner technologies to contribute a major technical advance in the efficiency of C. elegans survival assays. Introducing a platform in which large portions of a lifespan assay are automated enabled longevity studies of a scope not possible with previous exclusively manual assays and facilitated novel discovery. Still, as initially described, constructing and operating scanner-based lifespan machines requires considerable effort and expertise. Here we report on design modifications that simplify construction, decrease cost, eliminate certain mechanical failures, and decrease assay workload requirements. The modifications we document should make the lifespan machine more accessible to interested laboratories.

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秀丽隐杆线虫寿命机的简化设计。
秀丽隐杆线虫(秀丽隐杆线虫)寿命测定是研究长寿基础生物学的一种广泛使用的方法。传统的秀丽隐杆线虫寿命分析需要对单个动物进行劳动密集型的显微镜监测,以评估数周内的生命/死亡,这使得大规模的高通量研究不切实际。Stroustrup等人(2013)开发的寿命机采用了平板扫描仪技术,在线虫存活检测效率方面取得了重大技术进步。引入一个平台,其中大部分寿命分析是自动化的,使寿命研究的范围与以前完全手工分析不可能实现,并促进了新的发现。尽管如此,正如最初描述的那样,构建和操作基于扫描仪的寿命机器需要相当大的努力和专业知识。在这里,我们报告了简化结构、降低成本、消除某些机械故障和减少分析工作量要求的设计修改。我们记录的修改应该使有兴趣的实验室更容易使用寿命机。
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