首页> 外文会议>Life Science Systems and Applications Workshop, 2009. LiSSA 2009 >On-chip whole-animal manipulation for high-throughput subcellular-resolution in-vivo drug/genetic screening
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On-chip whole-animal manipulation for high-throughput subcellular-resolution in-vivo drug/genetic screening

机译:芯片全动物操作,用于高通量亚细胞分辨率的体内药物/基因筛选

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Techniques for rapid and automated small-animal manipulation and immobilization are necessary for high-throughput in vivo genetic/drug screens using cellular and sub-cellular features in multicellular organisms. We present a suite of technologies for complex high-throughput whole-animal genetic and drug screens. We demonstrate a high-speed microfluidic sorter that can isolate and immobilize Caenorhabditis elegans in a well-defined geometry, an integrated chip containing individually addressable screening chambers for incubation and exposure of individual animals to biochemical compounds, and a device for delivery of compound libraries in standard multiwell plates to microfluidic devices. The immobilization stability obtained by these devices is comparable to that of chemical anesthesia and the immobilization process does not affect lifespan, progeny production, or other aspects of animal health. The high-stability enables the use of a variety of key optical techniques. We use this to demonstrate femtosecond-laser nanosurgery and three-dimensional multiphoton microscopy to study neural regeneration at sub-cellular resolution in vivo.
机译:使用多细胞生物中的细胞和亚细胞特征进行高通量的体内遗传/药物筛选,需要快速,自动化的小动物操作和固定技术。我们提出了一套用于复杂的高通量全动物遗传和药物筛选的技术。我们展示了一种高速微流体分选仪,该分选仪可以以明确的几何形状分离和固定秀丽隐杆线虫,集成芯片,其中包含可单独寻址的筛选室,用于将单个动物孵育和暴露于生化化合物,以及用于递送化合物库的设备标准多孔板到微流控设备。这些设备获得的固定稳定性与化学麻醉的稳定性相当,并且固定过程不会影响寿命,子代生产或动物健康的其他方面。高稳定性使得可以使用各种关键的光学技术。我们用它来证明飞秒激光纳米手术和三维多光子显微镜研究在体内亚细胞分辨率下的神经再生。

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