Literature DB >> 29063084

A simple culture system for long-term imaging of individual C. elegans.

William E Pittman1, Drew B Sinha, William B Zhang, Holly E Kinser, Zachary Pincus.   

Abstract

We have miniaturized standard culture techniques to rear arrays of isolated, individual C. elegans throughout their lives on solid gel media. The resulting apparatus is compatible with brightfield and fluorescence microscopy, enabling longitudinal studies of morphology and fluorescent transgene expression. Our culture system exploits a novel crosslinking reaction between a polyethylene glycol hydrogel and a silicone elastomer to constrain animals to individual "corrals" on the gel surface. These devices are simple to construct on the benchtop with commercially available reagents, and, unlike microfluidic isolation methods, do not rely on micropatterned materials. We demonstrate that this new culture method has negligible effects on the physiology of C. elegans compared to standard culture on agar plates. In addition, RNAi techniques are effective in this system. Finally, the hydrogel-silicone binding chemistry that we developed also allows traditional microfluidic devices to be covalently attached to gel substrates instead of glass.

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Year:  2017        PMID: 29063084      PMCID: PMC5675786          DOI: 10.1039/c7lc00916j

Source DB:  PubMed          Journal:  Lab Chip        ISSN: 1473-0189            Impact factor:   6.799


  51 in total

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9.  NemaLife chip: a micropillar-based microfluidic culture device optimized for aging studies in crawling C. elegans.

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  10 in total

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