State Key Laboratory of Biochemical Engineering, Institute of Process Engineering, Chinese Academy of Sciences, Beijing 100190, PR China; School of Chemical Engineering, University of Chinese Academy of Sciences, Beijing 100049, PR China.
State Key Laboratory of Biochemical Engineering, Institute of Process Engineering, Chinese Academy of Sciences, Beijing 100190, PR China.
J Chromatogr A. 2022 Aug 16;1677:463301. doi: 10.1016/j.chroma.2022.463301. Epub 2022 Jul 2.
Size exclusion chromatography (SEC) of biomacromolecules using large pore size media and long column are usually necessary to obtain a satisfactory separation. However, the SEC separation of inactivated foot and mouth disease virus (FMDV) was found to induce some subtle but important conformational changes of FMDV in a pore-size and column length dependent manner. Here three Sephacryl media including S-300 HR, S-400 HR, and S-500 HR were tested, whose pore sizes were smaller than, similar to, and larger than the FMDV particles, respectively. High performance size exclusion chromatography (HPSEC) analyses showed that the FMDV after all these three SEC processes had earlier retention time, compared with that before SEC, but had no detectable difference in particle integrity. Longer SEC column led to more significant peak shifting in subsequent HPSEC analysis of FMDV. Further analyses indicated the SEC using larger pore size media induced more remarkable conformational changes and decrease in thermostability of FMDV, as well as decrease in immunogenicity in animal test. Fluorescence probe diffusion study suggested compared to SEC by S300, the compactness of the viral capsid after SEC by S400 and S500 was decreased, possibly due to more shear-induced FMDV particle rotation and inter-particle collision inside the media pores, as well as their interactions with the pore walls of the media during flowing through the column. Finally, a stabilization strategy by appending 5 mM CaCl in mobile phase of SEC separation was proposed and proved to efficiently maintain the conformation of the FMDV.
使用大孔径介质和长柱的生物大分子体积排阻色谱(SEC)通常是获得满意分离的必要条件。然而,我们发现,灭活口蹄疫病毒(FMDV)的 SEC 分离以孔径和柱长依赖的方式诱导 FMDV 发生一些细微但重要的构象变化。在这里,我们测试了三种 Sephacryl 介质,包括 S-300 HR、S-400 HR 和 S-500 HR,它们的孔径分别小于、等于和大于 FMDV 颗粒。高效体积排阻色谱(HPSEC)分析表明,与 SEC 之前相比,所有这三种 SEC 过程后的 FMDV 保留时间更早,但颗粒完整性没有可检测的差异。更长的 SEC 柱会导致后续 HPSEC 分析中 FMDV 的峰偏移更明显。进一步的分析表明,使用较大孔径介质的 SEC 会导致 FMDV 发生更显著的构象变化和热稳定性降低,以及在动物试验中的免疫原性降低。荧光探针扩散研究表明,与 S300 的 SEC 相比,S400 和 S500 的 SEC 后病毒衣壳的紧凑性降低,这可能是由于更多的剪切诱导 FMDV 颗粒旋转和颗粒间碰撞在介质孔内,以及它们在流经柱时与介质孔壁相互作用所致。最后,提出并验证了在 SEC 分离流动相添加 5mM CaCl2 的稳定化策略,该策略可有效地维持 FMDV 的构象。