Aubry Guillaume, Zhan Mei, Lu Hang
School of Chemical & Biomolecular Engineering, Georgia Institute of Technology, 311 Ferst Drive NW, Atlanta, Georgia 30332, USA.
Lab Chip. 2015 Mar 21;15(6):1424-31. doi: 10.1039/c4lc01384k.
The nematode Caenorhabditis elegans is an important model organism in research on neuroscience and development because of its stereotyped anatomy, relevance to human biology, and ease of culture and genetic manipulation. The first larval stage (L1) is of particular interest in many biological problems, including post-embryonic developmental processes and developmental decision-making, such as dauer formation. However, L1's small size and high mobility make it difficult to manipulate; particularly in microfluidic chips, which have been used to great advantage in handling larger larvae and adult animals, small features are difficult to fabricate and these structures often get clogged easily, making the devices less robust. We have developed a microfluidic device to overcome these challenges and enable high-resolution imaging and sorting of early larval stage C. elegans via encapsulation in droplets of a thermosensitive hydrogel. To achieve precise handling of early larval stage worms, we demonstrated on-chip production, storage, and sorting of hydrogel droplets. We also demonstrated temporary immobilization of the worms within the droplets, allowing high-resolution imaging with minimal physiological perturbations. Because of the ability to array hydrogel droplets for handling a large number of L1 worms in a robust way, we envision that this platform will be widely applicable to screening in various developmental studies.
线虫秀丽隐杆线虫因其具有固定的解剖结构、与人类生物学的相关性以及易于培养和基因操作,成为神经科学和发育研究中的重要模式生物。在许多生物学问题中,尤其是在包括胚胎后发育过程和发育决策(如滞育形成)等方面,第一幼虫阶段(L1)特别受关注。然而,L1体型小且活动能力强,难以进行操作;特别是在微流控芯片中,微流控芯片在处理较大幼虫和成年动物方面具有很大优势,但对于L1却难以制造微小特征,并且这些结构常常容易堵塞,导致设备的稳定性较差。我们开发了一种微流控设备来克服这些挑战,通过将早期幼虫阶段的秀丽隐杆线虫封装在热敏水凝胶液滴中,实现对其进行高分辨率成像和分选。为了实现对早期幼虫阶段线虫的精确处理,我们展示了水凝胶液滴在芯片上的产生、存储和分选。我们还展示了线虫在液滴中的临时固定,从而能够在对生理扰动最小的情况下进行高分辨率成像。由于能够排列水凝胶液滴以稳健地处理大量L1线虫,我们设想该平台将广泛应用于各种发育研究的筛选。