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NeuroChip:一种用于秀丽隐杆线虫成虫和幼虫的遗传和化学生物学筛选的微流控电生理装置。

NeuroChip: a microfluidic electrophysiological device for genetic and chemical biology screening of Caenorhabditis elegans adult and larvae.

机构信息

Hybrid Biodevices Group, Electronics and Computer Science, University of Southampton, Southampton, United Kingdom.

出版信息

PLoS One. 2013 May 22;8(5):e64297. doi: 10.1371/journal.pone.0064297. Print 2013.

Abstract

Genetic and chemical biology screens of C. elegans have been of enormous benefit in providing fundamental insight into neural function and neuroactive drugs. Recently the exploitation of microfluidic devices has added greater power to this experimental approach providing more discrete and higher throughput phenotypic analysis of neural systems. Here we make a significant addition to this repertoire through the design of a semi-automated microfluidic device, NeuroChip, which has been optimised for selecting worms based on the electrophysiological features of the pharyngeal neural network. We demonstrate this device has the capability to sort mutant from wild-type worms based on high definition extracellular electrophysiological recordings. NeuroChip resolves discrete differences in excitatory, inhibitory and neuromodulatory components of the neural network from individual animals. Worms may be fed into the device consecutively from a reservoir and recovered unharmed. It combines microfluidics with integrated electrode recording for sequential trapping, restraining, recording, releasing and recovering of C. elegans. Thus mutant worms may be selected, recovered and propagated enabling mutagenesis screens based on an electrophysiological phenotype. Drugs may be rapidly applied during the recording thus permitting compound screening. For toxicology, this analysis can provide a precise description of sub-lethal effects on neural function. The chamber has been modified to accommodate L2 larval stages showing applicability for small size nematodes including parasitic species which otherwise are not tractable to this experimental approach. We also combine NeuroChip with optogenetics for targeted interrogation of the function of the neural circuit. NeuroChip thus adds a new tool for exploitation of C. elegans and has applications in neurogenetics, drug discovery and neurotoxicology.

摘要

秀丽隐杆线虫的遗传和化学生物学筛选在提供对神经功能和神经活性药物的基本了解方面具有巨大的益处。最近,微流控设备的应用为这种实验方法增加了更大的动力,为神经系统的更离散和更高通量的表型分析提供了更多的可能性。在这里,我们通过设计一种半自动微流控设备NeuroChip,为这个实验方法做出了重要的补充,该设备针对基于咽神经网络的电生理特征对蠕虫进行选择进行了优化。我们证明了该设备能够基于高清晰度的细胞外电生理记录从野生型蠕虫中筛选出突变体。NeuroChip 可以从单个动物中分辨出神经网络的兴奋性、抑制性和神经调节性成分的离散差异。蠕虫可以从储液器中连续进入设备,并毫发无损地回收。它将微流控技术与集成电极记录相结合,用于连续捕获、约束、记录、释放和回收秀丽隐杆线虫。因此,可以选择、回收和繁殖突变体蠕虫,从而实现基于电生理表型的诱变筛选。在记录过程中可以快速应用药物,从而实现化合物筛选。对于毒理学,这种分析可以提供对神经功能亚致死效应的精确描述。该腔室已被修改以适应 L2 幼虫阶段,适用于包括寄生物种在内的小型线虫,这些线虫否则无法采用这种实验方法。我们还将 NeuroChip 与光遗传学结合使用,以靶向神经回路的功能。因此,NeuroChip 为秀丽隐杆线虫的利用增加了一种新工具,并且在神经遗传学、药物发现和神经毒理学中有应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6311/3661448/198b897c5edf/pone.0064297.g001.jpg

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