Liang Qihui, Yang Yi, Shao Bing, Gao Ye, Song Yu, Han Nanyin
School of Pharmaceutical Sciences, Peking University, Beijing 100191 China.
Beijing Center for Disease Prevention and Control, Beijing 100013 China.
Se Pu. 2018 May 8;36(5):480-486. doi: 10.3724/SP.J.1123.2017.12014.
Asymmetrical flow field-flow fractionation (AF4) is a kind of moderate separation technology for the analysis of macromolecules, including proteins with a wide range of sizes. In the separation channel, the membrane adsorption and aggregation of proteins affected by the carrier fluid (CF) composition lead to changes in analyte recovery and size distribution, thereby restricting the application of AF4 to biomolecules. Different pH levels (6.2, 7.4, 8.2), several types of cations (Na, K, Mg) and various ion strengths (0-0.1 mol/L)were studied to demonstrate the influence of carrier fluid composition on the membrane adsorption and aggregation of proteins. The results revealed the following:a) higher ion strength of CF resulted in a greater degree of membrane adsorption and aggregation; b) the zeta potential, determined by the pI of the protein and the pH of the CF, influenced the adsorption and aggregation; c) divalent cations (Mg) caused serious adsorption and aggregation. The experimental results can help us achieve better recovery and mitigate aggregate formation by using the optimal CF components in future AF4 studies. Moreover, the findings indicate that AF4 would find extensive application in protein biochemistry assays.
不对称流场-流分级(AF4)是一种用于分析大分子的适度分离技术,可分析包括各种大小蛋白质在内的大分子。在分离通道中,受载液(CF)组成影响的蛋白质的膜吸附和聚集会导致分析物回收率和尺寸分布的变化,从而限制了AF4在生物分子中的应用。研究了不同的pH值(6.2、7.4、8.2)、几种类型的阳离子(Na、K、Mg)和各种离子强度(0-0.1 mol/L),以证明载液组成对蛋白质膜吸附和聚集的影响。结果表明:a)CF的离子强度越高,膜吸附和聚集程度越大;b)由蛋白质的pI和CF的pH值决定的ζ电位影响吸附和聚集;c)二价阳离子(Mg)会导致严重的吸附和聚集。实验结果有助于我们在未来的AF4研究中通过使用最佳的CF成分实现更好的回收率并减轻聚集体的形成。此外,研究结果表明AF4将在蛋白质生物化学分析中得到广泛应用。