Integrated micro chemical systems and life science

T. Kitamori
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引用次数: 1

Abstract

Our research group has developed the micro unit operation (MUO) and the continuous flow chemical processing (CFCP) methods, 2D and 3D multi-phase layered flow network, and the thermal lens microscope (TLM), for design, control, and ultra sensitive detection of non-fluorescent molecules at sub-single molecule (y-mole) levels. These methods have enabled integration of any type of chemical system on microchips almost freely. The performances of those integrated micro systems, such as processing time, throughput, detection limit, etc., were proved to be two to three orders superior to conventional systems. High throughput processing of the micro immunoassay systems for diagnosis and the micro bioassay systems for toxic screenings are the most typical examples for human and life science application. The micro bioassay system is introduced as an example of our integration technique for complicated systems. Furthermore, bio-MEMS using living cell and the Japanese national research projects on microchip chemical technologies are also introduced briefly.
集成微化学系统和生命科学
我们的研究小组开发了微单元操作(MUO)和连续流化学处理(CFCP)方法,二维和三维多相分层流网络以及热透镜显微镜(TLM),用于亚单分子(y-摩尔)水平的非荧光分子的设计,控制和超灵敏检测。这些方法使得在微芯片上几乎自由地集成任何类型的化学系统成为可能。这些集成微系统在处理时间、吞吐量、检测限等方面的性能都比传统系统高出2 ~ 3个数量级。用于诊断的微免疫测定系统和用于毒性筛选的微生物测定系统的高通量处理是人类和生命科学应用的最典型的例子。作为我们复杂系统集成技术的一个例子,介绍了微生物测定系统。此外,还简要介绍了利用活细胞的生物微机电系统和日本在微芯片化学技术方面的国家研究项目。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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