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Long-term high-resolution imaging and culture of C. elegans in chip-gel hybrid microfluidic device for developmental studies

机译:线虫线虫在芯片-凝胶混合微流体装置中的长期高分辨率成像和培养,用于发育研究

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Developmental studies in multicellular model organisms such as Caernohabditis elegans rely extensively on the ability to cultivate and image animals repeatedly at the cell or subcellular level. However, standard high-resolution imaging techniques require the use of anaesthetics for immobilization, and may have undesirable side effects on development. Thus such techniques are not ideal in allowing the same animals to grow and be imaged throughout development to observe specific developmental processes. In this paper, we present a microfluidic system designed to overcome these difficulties. The system allows for long-term culture of C. elegans starting at L1 larval stage and repeated high-resolution imaging at physiological temperatures without using anaesthetics. We use a commercially available biocompatible polymer, Pluronic F127 for immobilization; this polymer is capable of a reversible thermo-sensitive sol-gel transition within ~2 °C, which is well-controlled in the microfluidic chip. The gel phase is sufficient to immobilize the animals. While animals are not imaged, they are cultured in individual chambers in media containing nutrients required for development. We show here that this method facilitates time-lapse studies of single animals at high-resolution and lends itself to live imaging experiments on developmental processes and dynamic events.
机译:在诸如秀丽隐杆线虫的多细胞模型生物中的开发研究广泛依赖于在细胞或亚细胞水平上反复培养和成像动物的能力。但是,标准的高分辨率成像技术需要使用麻醉剂进行固定,并且可能会对显影产生不良影响。因此,这样的技术在允许相同的动物生长并在整个发育过程中成像以观察特定的发育过程方面并不理想。在本文中,我们提出了一种旨在克服这些困难的微流体系统。该系统允许从L1幼虫阶段开始进行线虫的长期培养,并在不使用麻醉剂的情况下在生理温度下重复高分辨率成像。我们使用市售的生物相容性聚合物Pluronic F127进行固定;这种聚合物能够在〜2°C的温度范围内发生可逆的热敏溶胶-凝胶转变,这在微流控芯片中得到了很好的控制。凝胶相足以固定动物。虽然没有对动物进行成像,但将它们在含有培养发育所需营养的培养基中的各个小室中进行培养。我们在这里显示,此方法有助于对单个动物进行高分辨率的延时研究,并使其适用于发育过程和动态事件的实时成像实验。

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