Dou Haiyang, Li Yueqiu, Choi Jaeyeong, Huo Shuying, Ding Liang, Shen Shigang, Lee Seungho
Key Laboratory of Analytical Science and Technology of Hebei Province, College of Chemistry and Environmental Science, School of Medicine, Hebei University, Baoding 071002, China.
Key Laboratory of Analytical Science and Technology of Hebei Province, College of Chemistry and Environmental Science, School of Medicine, Hebei University, Baoding 071002, China.
J Chromatogr A. 2016 Sep 23;1465:165-74. doi: 10.1016/j.chroma.2016.08.062. Epub 2016 Aug 27.
The capability of asymmetrical flow field-flow fractionation (AF4) coupled with UV/VIS, multiangle light scattering (MALS) and quasi-elastic light scattering (QELS) (AF4-UV-MALS-QELS) for separation and characterization of egg yolk plasma was evaluated. The accuracy of hydrodynamic radius (Rh) obtained from QELS and AF4 theory (using both simplified and full expression of AF4 retention equations) was discussed. The conformation of low density lipoprotein (LDL) and its aggregates in egg yolk plasma was discussed based on the ratio of radius of gyration (Rg) to Rh together with the results from bio-transmission electron microscopy (Bio-TEM). The results indicate that the full retention equation is more relevant than simplified version for the Rh determination at high cross flow rate. The Rh from online QELS is reliable only at a specific range of sample concentration. The effect of programmed cross flow rate (linear and exponential decay) on the analysis of egg yolk plasma was also investigated. It was found that the use of an exponentially decaying cross flow rate not only reduces the AF4 analysis time of the egg yolk plasma, but also provides better resolution than the use of either a constant or linearly decaying cross flow rate. A combination of an exponentially decaying cross flow AF4-UV-MALS-QELS and the utilization of full retention equation was proved to be a useful method for the separation and characterization of egg yolk plasma.
评估了不对称流场-流分馏(AF4)与紫外/可见光谱、多角度光散射(MALS)和准弹性光散射(QELS)联用(AF4-UV-MALS-QELS)分离和表征蛋黄血浆的能力。讨论了通过QELS和AF4理论(使用AF4保留方程的简化表达式和完整表达式)获得的流体力学半径(Rh)的准确性。基于回转半径(Rg)与Rh的比值以及生物透射电子显微镜(Bio-TEM)的结果,讨论了蛋黄血浆中低密度脂蛋白(LDL)及其聚集体的构象。结果表明,在高错流速率下,完整保留方程比简化版本更适用于Rh的测定。在线QELS得到的Rh仅在特定的样品浓度范围内可靠。还研究了程序错流速率(线性和指数衰减)对蛋黄血浆分析的影响。发现使用指数衰减的错流速率不仅减少了蛋黄血浆的AF4分析时间,而且比使用恒定或线性衰减的错流速率提供了更好的分辨率。事实证明,指数衰减错流AF4-UV-MALS-QELS与完整保留方程的结合是分离和表征蛋黄血浆的一种有用方法。