Laboratory of Biophysics and Medicity Research Laboratory, University of Turku, Tykistökatu 6A, 20520 Turku, Finland.
Anal Chem. 2013 Mar 5;85(5):2689-96. doi: 10.1021/ac303069f. Epub 2013 Feb 20.
A novel easy-to-use homogeneous method utilizing two-photon excitation (TPX) for quantification of proteins or counting of eukaryotic cells in solution has been developed. This highly sensitive technique is based on the adsorption competition between the sample and fluorescently labeled protein to micrometer-sized carboxylate modified polystyrene particles and detection of two-photon excited fluorescence. The adsorption of the labeled protein to the particles was detected as a distinct fluorescence on individual microparticles. Analyte protein or eukaryotic cells interacted with particle surface and reduced the adsorption of labeled protein to the particles resulting in a decrease of the fluorescence. The optimizations of assay conditions were performed separately for protein quantification and cell counting, and the principle of the method was confirmed with the fluorescence microscopy imaging. The protein quantification assay allowed the determination of picogram quantities (1.2 μg/L) of protein, and the cell counting assay allowed three cells in the sample with an average variation of approximately 10% in the signal. The protein assay sensitivity was more than 500-fold improved from the common most sensitive commercial methods. Moreover, the dynamic range of the assay was broad, approximately 4 orders of magnitude. The cell assay has sensitivity comparable to the most sensitive commercial method. The developed method tolerates interfering agents such as neutral detergents found in cell lysate samples even at high concentrations. The method is experimentally fairly simple and allows the expansion for the use of the TPX technology.
已经开发出一种新颖的、易于使用的均相方法,利用双光子激发(TPX)定量溶液中的蛋白质或真核细胞。这种高灵敏度的技术基于样品与荧光标记蛋白之间的吸附竞争,与微米大小的羧基化修饰聚苯乙烯颗粒结合,并检测双光子激发荧光。标记蛋白在颗粒上的吸附被检测为单个微颗粒上的明显荧光。分析物蛋白质或真核细胞与颗粒表面相互作用,并减少标记蛋白与颗粒的吸附,从而导致荧光减少。分别针对蛋白质定量和细胞计数对测定条件进行了优化,并通过荧光显微镜成像验证了该方法的原理。蛋白质定量测定允许测定皮克数量(1.2 μg/L)的蛋白质,而细胞计数测定允许在样品中存在三个细胞,信号的平均变化约为 10%。与最灵敏的商业方法相比,蛋白质测定的灵敏度提高了 500 多倍。此外,该测定的动态范围很宽,大约为 4 个数量级。细胞测定的灵敏度与最灵敏的商业方法相当。该方法耐受细胞裂解样品中存在的中性去污剂等干扰剂,即使在高浓度下也是如此。该方法在实验上相当简单,并允许扩展使用 TPX 技术。