Sims Christopher E, Allbritton Nancy L
Department of Physiology and Biophysics, University of California, Irvine, California 92697, USA.
Lab Chip. 2007 Apr;7(4):423-40. doi: 10.1039/b615235j. Epub 2007 Mar 6.
A goal of modern biology is to understand the molecular mechanisms underlying cellular function. The ability to manipulate and analyze single cells is crucial for this task. The advent of microengineering is providing biologists with unprecedented opportunities for cell handling and investigation on a cell-by-cell basis. For this reason, lab-on-a-chip (LOC) technologies are emerging as the next revolution in tools for biological discovery. In the current discussion, we seek to summarize the state of the art for conventional technologies in use by biologists for the analysis of single, mammalian cells, and then compare LOC devices engineered for these same single-cell studies. While a review of the technical progress is included, a major goal is to present the view point of the practicing biologist and the advances that might increase adoption by these individuals. The LOC field is expanding rapidly, and we have focused on areas of broad interest to the biology community where the technology is sufficiently far advanced to contemplate near-term application in biological experimentation. Focus areas to be covered include flow cytometry, electrophoretic analysis of cell contents, fluorescent-indicator-based analyses, cells as small volume reactors, control of the cellular microenvironment, and single-cell PCR.
现代生物学的一个目标是了解细胞功能背后的分子机制。对单个细胞进行操作和分析的能力对于这项任务至关重要。微工程学的出现为生物学家提供了前所未有的机会,可在逐个细胞的基础上进行细胞处理和研究。因此,芯片实验室(LOC)技术正成为生物发现工具的下一次革命。在当前的讨论中,我们试图总结生物学家用于分析单个哺乳动物细胞的传统技术的现状,然后比较为这些相同的单细胞研究而设计的LOC设备。虽然包括了对技术进展的回顾,但一个主要目标是呈现实践生物学家的观点以及可能会增加这些人采用率的进展。LOC领域正在迅速扩展,我们专注于生物学界广泛感兴趣的领域,在这些领域中,该技术已经足够先进,可以考虑在生物实验中的近期应用。涵盖的重点领域包括流式细胞术、细胞内容物的电泳分析、基于荧光指示剂的分析、作为小体积反应器的细胞、细胞微环境的控制以及单细胞PCR。