Nagl Stefan
Department of Chemistry The Hong Kong University of Science and Technology Kowloon Hong Kong SAR P. R. China.
Eng Life Sci. 2017 Aug 2;18(2):114-123. doi: 10.1002/elsc.201700035. eCollection 2018 Feb.
Recently, a new observation method for monitoring of pH gradients in microfluidic free-flow electrophoresis has emerged. It is based on the use of chip-integrated fluorescent or luminescent micro sensor layers. These are able to monitor pH gradients in miniaturized separations in real time and spatially resolved; this is particularly useful in isoelectric focusing. Here these multifunctional microdevices that feature continuous separation, monitoring, and in some instances other functionalities, are reviewed. The employed microfabrication procedures to produce these devices are discussed and the different pH sensor matrices that were integrated and their applications in the separation of different types of biomolecules. The procedures for obtaining spatially resolved information about the separated molecules and the pH at the same time and different detection modalities to achieve this such as deep UV fluorescence as well as time-resolved referenced pH sensing and the integration of a precolumn labeling step into these platforms are also highlighted.
最近,一种用于监测微流控自由流动电泳中pH梯度的新观察方法出现了。它基于芯片集成荧光或发光微传感器层的使用。这些传感器能够实时且空间分辨地监测小型化分离中的pH梯度;这在等电聚焦中特别有用。在此,对具有连续分离、监测以及在某些情况下其他功能的这些多功能微型设备进行综述。讨论了用于制造这些设备的微加工工艺,以及集成的不同pH传感器基质及其在不同类型生物分子分离中的应用。同时获取关于分离分子和pH的空间分辨信息的程序以及实现这一目的的不同检测方式,如深紫外荧光以及时间分辨参考pH传感,还有将柱前标记步骤集成到这些平台中也得到了强调。