Dittrich Petra S, Manz Andreas
ISAS - Institute for Analytical Sciences, Bunsen-Kirchhoff-Str. 11, D44139 Dortmund, Germany.
Nat Rev Drug Discov. 2006 Mar;5(3):210-8. doi: 10.1038/nrd1985.
Miniaturization can expand the capability of existing bioassays, separation technologies and chemical synthesis techniques. Although a reduction in size to the micrometre scale will usually not change the nature of molecular reactions, laws of scale for surface per volume, molecular diffusion and heat transport enable dramatic increases in throughput. Besides the many microwell-plate- or bead-based methods, microfluidic chips have been widely used to provide small volumes and fluid connections and could eventually outperform conventionally used robotic fluid handling. Moreover, completely novel applications without a macroscopic equivalent have recently been developed. This article reviews current and future applications of microfluidics and highlights the potential of 'lab-on-a-chip' technology for drug discovery.
小型化能够扩展现有生物测定、分离技术及化学合成技术的能力。尽管尺寸减小到微米级别通常不会改变分子反应的本质,但单位体积的表面积、分子扩散及热传递的尺度定律能使通量显著提高。除了众多基于微孔板或珠子的方法外,微流控芯片已被广泛用于提供小体积和流体连接,最终可能超越传统使用的机器人流体处理技术。此外,最近还开发出了一些没有宏观对应物的全新应用。本文综述了微流控技术的当前及未来应用,并突出了“芯片实验室”技术在药物发现方面的潜力。