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采用全柱成像检测的毛细管等电聚焦(iCIEF):一种用于唾液α淀粉酶表征和定量分析的新方法。

Capillary isoelectric focusing with whole column imaging detection (iCIEF): A new approach to the characterization and quantification of salivary α-amylase.

作者信息

Zarabadi Atefeh S, Huang Tiemin, Mielke John G

机构信息

School of Public Health and Health Systems, University of Waterloo, Waterloo, ON, Canada.

Advanced Electrophoresis Solutions Ltd., Cambridge, ON, Canada.

出版信息

J Chromatogr B Analyt Technol Biomed Life Sci. 2017 May 15;1053:65-71. doi: 10.1016/j.jchromb.2017.03.032. Epub 2017 Mar 30.

Abstract

Saliva is an easily collected biological fluid with potentially important diagnostic value. While gel electrophoresis is generally used for salivary analysis, we employed the capillary isoelectric focusing technique to allow for a rapid, automated mode of electrophoresis. Capillary isoelectric focusing coupled with UV whole column imaging detection (iCIEF) was used to develop a robust protocol to characterize salivary α-amylase collected from various glands. Notably, three sample preparation methods were examined: ultrafiltration, gel-filtration, and starch affinity interaction with salivary amylase. Salivary α-amylase separated into two major peaks before sample treatment; while both filtration methods and starch affinity interaction of salivary amylase enhanced the resolution of isozymes, desalting with gel-filtration displayed the best recovery and the highest resolution of isozymes. Good agreement existed between the observed isoelectric points and the values reported in the literature. In addition, a high level of precision was apparent, and the relative standard deviation for replicates was less than 0.5% for pIs (peak positions) and below 10% for peak area. Furthermore, saliva secreted from the parotid gland proved to have a higher amylase content compared to either secretions from the submandibular/sublingual complex, or whole saliva, as well as amylase enhancement under stimulation. The results suggest that the iCIEF technique can be used to accurately resolve and quantitate amylase isozymes in a rapid and automated fashion, and that gel-filtration should be applied to saliva samples beforehand to allow for optimal purification and characterization.

摘要

唾液是一种易于采集的生物流体,具有潜在的重要诊断价值。虽然凝胶电泳通常用于唾液分析,但我们采用了毛细管等电聚焦技术,以实现快速、自动化的电泳模式。毛细管等电聚焦结合紫外全柱成像检测(iCIEF)被用于开发一种可靠的方案,以表征从各种腺体收集的唾液α-淀粉酶。值得注意的是,研究了三种样品制备方法:超滤、凝胶过滤以及唾液淀粉酶与淀粉的亲和相互作用。在样品处理前,唾液α-淀粉酶分离为两个主要峰;虽然两种过滤方法以及唾液淀粉酶与淀粉的亲和相互作用都提高了同工酶的分辨率,但凝胶过滤脱盐显示出最佳的回收率和最高的同工酶分辨率。观察到的等电点与文献报道的值之间存在良好的一致性。此外,精度水平很高,重复测量的相对标准偏差对于pI(峰位置)小于0.5%,对于峰面积低于10%。此外,与下颌下腺/舌下腺复合体的分泌物或全唾液相比,腮腺分泌的唾液被证明具有更高的淀粉酶含量,以及在刺激下淀粉酶的增强。结果表明,iCIEF技术可用于以快速、自动化的方式准确解析和定量淀粉酶同工酶,并且应事先将凝胶过滤应用于唾液样品,以实现最佳的纯化和表征。

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