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Metaphase FISH on a Chip: Miniaturized Microfluidic Device for Fluorescence in situ Hybridization

机译:芯片上的中期FISH:用于荧光原位杂交的微型化微流控装置

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Fluorescence in situ Hybridization (FISH) is a major cytogenetic technique for clinical genetic diagnosis of both inherited and acquired chromosomal abnormalities. Although FISH techniques have evolved and are often used together with other cytogenetic methods like CGH, PRINS and PNA-FISH, the process continues to be a manual, labour intensive, expensive and time consuming technique, often taking over 3 5 days, even in dedicated labs. We have developed a novel microFISH device to perform metaphase FISH on a chip which overcomes many shortcomings of the current laboratory protocols. This work also introduces a novel splashing device for preparing metaphase spreads on a microscope glass slide, followed by a rapid adhesive tape-based bonding protocol leading to rapid fabrication of the microFISH device. The microFISH device allows for an optimized metaphase FISH protocol on a chip with over a 20-fold reduction in the reagent volume. This is the first demonstration of metaphase FISH on a microfluidic device and offers a possibility of automation and significant cost reduction of many routine diagnostic tests of genetic anomalies.
机译:荧光原位杂交(FISH)是一种主要的细胞遗传技术,可用于临床遗传诊断遗传性和获得性染色体异常。尽管FISH技术已经发展并经常与其他细胞遗传学方法(例如CGH,PRINS和PNA-FISH)一起使用,但该过程仍然是一种人工,劳动密集型,昂贵且耗时的技术,即使在专用的情况下,也通常需要3到5天以上实验室。我们已经开发出一种新颖的microFISH设备,可以在芯片上执行中期FISH,从而克服了当前实验室协议的许多缺点。这项工作还介绍了一种新型的溅镀装置,用于在显微镜载玻片上制备中期扩散物,随后是基于快速胶带的粘结方案,从而可以快速制造microFISH装置。 microFISH设备允许在芯片上优化中期FISH方案,试剂体积减少20倍以上。这是在微流控设备上进行的中期FISH的首次演示,它为许多常规的遗传异常诊断测试提供了自动化和显着降低成本的可能性。

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