Srbek Jan, Eickhoff Jan, Effelsberg Uwe, Kraiczek Karsten, van de Goor Tom, Coufal Pavel
Faculty of Science, Department of Analytical Chemistry, Charles University in Prague, Prague, Czech Republic.
J Sep Sci. 2007 Aug;30(13):2046-52. doi: 10.1002/jssc.200700053.
Although the proteome of each organism is unambiguously coded in its genome, the proteome shows the real biology in action in each particular organism. New powerful tools are being developed for biochemists and biologists to analyze complex biological samples for studying the complete protein supplement of the genome, i. e., the proteome. There are several methods available for proteome analysis including 2-DE and several forms of MS. In recent years, technologies such as microfluidics and array-based systems have appeared in the field of analysis, identification, and quantification of proteins. These novel approaches might help in solving current technical challenges in proteomics. This paper presents a practical application of the first commercially available microfluidic nano-ESI device coupled with nano-LC (i. e., HPLC-chip) for the analysis of samples of some biological protein mixtures.
尽管每个生物体的蛋白质组都由其基因组明确编码,但蛋白质组展示了每个特定生物体中实际发挥作用的生物学特性。正在为生物化学家和生物学家开发新的强大工具,用于分析复杂的生物样品,以研究基因组的完整蛋白质补充,即蛋白质组。有几种方法可用于蛋白质组分析,包括二维电泳(2-DE)和几种形式的质谱(MS)。近年来,诸如微流控和基于阵列的系统等技术已出现在蛋白质分析、鉴定和定量领域。这些新颖的方法可能有助于解决蛋白质组学当前的技术挑战。本文介绍了首个商业化的微流控纳米电喷雾电离(nano-ESI)装置与纳米液相色谱(nano-LC,即HPLC芯片)联用,用于分析一些生物蛋白质混合物样品的实际应用。