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WormFarm: A quantitative control and measurement device toward automated Caenorhabditis elegans aging analysis

机译:WormFarm:自动化秀丽隐杆线虫衰老分析的定量控制和测量设备

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摘要

Caenorhabditis elegans is a leading model organism for studying the basic mechanisms of aging. Progress has been limited, however, by the lack of an automated system for quantitative analysis of longevity and mean lifespan. To address this barrier, we developed 'WormFarm', an integrated microfluidic device for culturing nematodes. Cohorts of 30-50 animals are maintained throughout their lifespan in each of eight separate chambers on a single WormFarm polydimethylsiloxane chip. Design features allow for automated removal of progeny and efficient control of environmental conditions. In addition, we have developed computational algorithms for automated analysis of video footage to quantitate survival and other phenotypes, such as body size and motility. As proof-of-principle, we show here that WormFarm successfully recapitulates survival data obtained from a standard plate-based assay for both RNAi-mediated and dietary-induced changes in lifespan. Further, using a fluorescent reporter in conjunction with WormFarm, we report an age-associated decrease in fluorescent intensity of GFP in transgenic worms expressing GFP tagged with a mitochondrial import signal under the control of the myo-3 promoter. This marker may therefore serve as a useful biomarker of biological age and aging rate.
机译:秀丽隐杆线虫是研究衰老的基本机制的领先模型生物。然而,由于缺乏用于定量分析寿命和平均寿命的自动化系统,进展受到了限制。为了解决这一障碍,我们开发了“ WormFarm”,这是一种用于培养线虫的集成微流控设备。在单个WormFarm聚二甲基硅氧烷芯片上的八个单独的小室中,将30至50只动物的整个生命周期维持在整个生命周期中。设计功能允许自动删除子代并有效控制环境条件。此外,我们还开发了用于自动分析视频录像的计算算法,以量化存活率和其他表型,例如体型和运动能力。作为原理的证明,我们在这里表明,WormFarm成功地概括了从基于标准板的测定中获得的关于RNAi介导的和饮食引起的寿命变化的存活数据。此外,结合使用荧光记者与WormFarm,我们报道了在myo-3启动子控制下表达线粒体输入信号标记的GFP的转基因蠕虫中,GFP的荧光强度与年龄相关的下降。因此,该标记物可以用作生物学年龄和衰老率的有用的生物标记物。

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