Chen F T, Sternberg J C
Beckman Instruments, Inc., Fullerton, CA 92634.
Electrophoresis. 1994 Jan;15(1):13-21. doi: 10.1002/elps.1150150104.
Protein mixtures can be characterized in terms of their separations by capillary electrophoresis (CE). The separation of proteins by CE is performed in untreated fused-silica columns. Model proteins and complex protein mixtures with pI values ranging from 4.0 to 11.0 are separated in such columns in less than 10 min in the presence of phosphate buffer with a pH between 4.0 and 9.0. The application of CE separation procedures for routine analysis of protein in serum, urine, and cerebrospinal fluid in borate-based buffer is also demonstrated. The detection of protein in CE is usually based on the intrinsic ultraviolet (UV) absorbance of the peptide bond at or near 200 nm, which provides a detection limit of about 10(-5) M. The same protein separation procedures can also be applied to immunochemical reaction systems in which one component is labeled. Thus, an antigen analyte, or the antibody to the analyte, may be labeled with a fluor and detected by laser-induced fluorescence (LIF). With a fluorescent-labeled reactant, the use of LIF detection further extends the detection limit to 10(-11) M. The CE separation technique for proteins provides a means to separate the bound and free species of the labeled antigen or antibody without the use of a solid support. The application of these separation techniques in conjunction with laser-induced fluorescence detection to make possible the homogeneous immunochemical measurement of species at concentrations in the range of 10(-9) to 10(-10) M is shown.
蛋白质混合物可以通过毛细管电泳(CE)的分离情况来进行表征。蛋白质在未经处理的熔融石英柱中进行CE分离。在pH值介于4.0至9.0的磷酸盐缓冲液存在下,pI值范围为4.0至11.0的模型蛋白质和复杂蛋白质混合物在这类柱子中不到10分钟即可分离。还展示了CE分离程序在基于硼酸盐缓冲液的血清、尿液和脑脊液中蛋白质常规分析中的应用。CE中蛋白质的检测通常基于肽键在200 nm或其附近的固有紫外(UV)吸光度,其检测限约为10⁻⁵ M。同样的蛋白质分离程序也可应用于其中一种成分被标记的免疫化学反应体系。因此,抗原分析物或该分析物的抗体可以用荧光染料标记,并通过激光诱导荧光(LIF)进行检测。使用荧光标记反应物时,LIF检测将检测限进一步扩展至10⁻¹¹ M。蛋白质的CE分离技术提供了一种在不使用固体支持物的情况下分离标记抗原或抗体的结合态和游离态的方法。展示了将这些分离技术与激光诱导荧光检测相结合,从而实现对浓度范围在10⁻⁹至10⁻¹⁰ M的物质进行均相免疫化学测量的应用。