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首页> 外文期刊>Analytica chimica acta >A novel micro-injection droplet microfluidic system for studying locomotive behavior responses to Cu2+ induced neurotoxin in individual C.elegans
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A novel micro-injection droplet microfluidic system for studying locomotive behavior responses to Cu2+ induced neurotoxin in individual C.elegans

机译:一种新型微注射液体微流体系统,用于研究Cu2 +诱导个体C.Elegans中的诱导神经毒素的机车行为响应

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Analysis of C.elegans by droplet microfluidics has been widely used in study of locomotive behavior responses to neurotoxicity due to the capacity of high-throughput manipulating single cells. However, it has been difficult to manipulate droplets flexibly and actively on account of the limitation of the dimension of individual C. elegans droplets. In this study, a novel MiDMS (Micro-injection Droplet Microfluidic System) was proposed, which consisted of three parts: single C. elegans droplet generator, droplets drug micro-injection channels and drug-incubation observation array. Individual C. elegans droplets were produced initially by regulating the flow rates between oil and water phase as well as the concentration of C.elegans in suspension. Then, the drug solution was precisely injected into each C.elegans droplet, which by electricity induced surface tension of droplet changing. In addition, the effect of neurotoxic Cu2+ on locomotive behavior of C. elegans was evaluated at single cell resolution. The results showed that the neurotoxicity induced behavioral disorder of the C. elegans was more obvious with the increase of Cu2+ concentration or treatment time, and these dose-effect and time-effect relationship in MiDMS were similar as in petri dish. This study will provide a powerful platform for the study of the response of C. elegans to quantitative drug at single cell resolution. (C) 2020 Published by Elsevier B.V.
机译:通过液滴微流体的C.Elegans分析已广泛用于研究机车行为因神经毒性的研究由于高通量操纵单细胞的能力。然而,由于对单个秀丽隐杆杆的尺寸的限制,难以灵活地操纵液滴。在本研究中,提出了一种新型含量(微注射液滴微流体系统),其中包括三个部分:单个C.秀丽隐杆发生器,液滴药微注射通道和药物孵化观察阵列。最初通过调节油和水相之间的流速以及悬浮液中的C.Elegans的浓度来生产单个胶带杆。然后,将药物溶液精确注入到每种C.Elegans液滴中,这通过电诱导的液滴变化的表面张力。此外,在单细胞分辨率下评估了神经毒性Cu2 +对C.Cegans的机车行为的影响。结果表明,随着Cu2 +浓度或治疗时间的增加,C.秀丽隐杆线虫的神经毒性诱导的行为障碍更为明显,并且这些剂量效应和中间剂量和时间效应关系与培养皿相似。本研究将为单胞小区分辨率进行单杆虫对数量药物的响应来提供强大的平台。 (c)2020由elsevier b.v发布。

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