Laboratory of Chemical Biotechnology, TU Dortmund, Emil-Figge-Str. 66, 44221 Dortmund, Germany.
Curr Opin Biotechnol. 2010 Feb;21(1):12-20. doi: 10.1016/j.copbio.2010.01.007. Epub 2010 Feb 16.
Single cells represent the minimal functional unit of life. A major goal of biology is to understand the mechanisms operating in this minimal unit. Nowadays, analysis of the single cell can be performed at unprecedented resolution using new lab-on-a-chip devices and advanced analytical methods. While cell handling and cultivation devices can be classified into finite volume reactors and flow systems, the analytical approaches differ in respect to invasive (i.e. chemical) and noninvasive (i.e. biological/living cell) analysis. Using these new and exciting technologies cell-to-cell differences, originating from regulatory circuits and distinct microenvironments, can now be explored. For example, it could be shown that the rates of transcription and translation are stochastic. Chemical and biological single cell analyses provide an unprecedented access to the understanding of cell-to-cell differences and basic biological concepts.
单细胞是生命的最小功能单位。生物学的主要目标是理解这个最小单位中的运作机制。如今,使用新的芯片实验室设备和先进的分析方法,可以以前所未有的分辨率对单细胞进行分析。虽然细胞处理和培养设备可以分为有限体积反应器和流动系统,但分析方法在侵入性(即化学)和非侵入性(即生物/活细胞)分析方面有所不同。利用这些新的令人兴奋的技术,可以探索源自调节回路和不同微环境的细胞间差异。例如,已经表明转录和翻译的速率是随机的。化学和生物单细胞分析为理解细胞间差异和基本生物学概念提供了前所未有的途径。