Ai Xiaoni, Zhuo Weipeng, Liang Qionglin, McGrath Patrick T, Lu Hang
Beijing Key Laboratory for Microanalytical Methods and Instrumentation, Department of Chemistry, Tsinghua University, Beijing, 100084, China.
Lab Chip. 2014 May 21;14(10):1746-52. doi: 10.1039/c3lc51334c. Epub 2014 Mar 27.
Caenorhabditis elegans is a widely used model organism to study development, aging and behavior. Many of these biological studies require staging a large number of worms to assay a synchronized population of animals. Conventional synchronization techniques such as manual picking, gravity stratification and chemical bleaching are labor-intensive and could perturb animals' physiology. Thus, there is a need for a simple inexpensive technology to sort a mixed population of worms based on their developmental stages with minimal perturbation. Here we demonstrate a simple but accurate and high-throughput technique to sort based on animal size, which correlates well with developmental stages. The device consists of an array of geometrically optimized pillars that act as a sieve to allow worms of specific sizes to rapidly move through. With optimized chamber heights, pillar spacing and driving pressures, these binary separation devices are capable of independently separating a mixture of worms at two different stages at average efficiency of around 95%, and throughput of hundreds of worms per minute. In addition, when four devices are used sequentially, we demonstrate the ability to stratify a mixture of worms of all developmental stages with >85% overall efficiency.
秀丽隐杆线虫是一种广泛用于研究发育、衰老和行为的模式生物。许多此类生物学研究需要对大量线虫进行分期,以分析同步化的动物群体。传统的同步化技术,如手工挑选、重力分层和化学漂白,劳动强度大,且可能干扰动物的生理状态。因此,需要一种简单廉价的技术,以最小的干扰根据线虫的发育阶段对混合群体进行分类。在这里,我们展示了一种基于动物大小进行分类的简单但准确且高通量的技术,动物大小与发育阶段密切相关。该装置由一系列几何形状优化的柱子组成,这些柱子起到筛子的作用,使特定大小的线虫能够快速通过。通过优化腔室高度、柱子间距和驱动压力,这些二元分离装置能够以约95%的平均效率独立分离处于两个不同阶段的线虫混合物,每分钟的通量可达数百条线虫。此外,当依次使用四个装置时,我们展示了将所有发育阶段的线虫混合物分层的能力,总体效率超过85%。