School of Chemistry and Chemical Engineering, Central South University, Changsha 410083, China.
J Chromatogr A. 2013 Aug 23;1304:183-93. doi: 10.1016/j.chroma.2013.07.043. Epub 2013 Jul 13.
In this study, off-line two-dimensional (2D) complexation high speed counter-current chromatography (HSCCC) was developed for the separation of bovine serum albumin (BSA) binders from the ethyl acetate extract of Fructus polygoni orientalis. Target-guided strategy of BSA functionalized iron oxide magnetic nanoparticles coupled with high performance liquid chromatography-tandem mass spectrometry ((BSA-Fe3O4 MNPs)-HPLC-MS/MS) experiment was proposed. In the orthogonal separation system, a Normal-Phase HSCCC with 0.01mol/L copper ion as complexation agent in the aqueous phase was employed for the first dimension and Recycling HSCCC, Reverse-Phase HSCCC with 0.1mol/L copper ion were used for the second dimension in parallel. Including two pairs of cis-trans isomers, seven BSA binders including 3,5,7-Trihydroxychromone (1), taxifolin (2), N-cis-paprazine (3), N-cis-feruloyltyramine (4), N-trans-paprazine (5), N-trans-feruloyltyramine (6) and an unidentified compound (7) were obtained. The purities of these seven compounds were all over 95.0% as determined by HPLC. The complexation HSCCC behaviors of seven compounds were also investigated by studying their relationship with copper ion. Results showed that the combinative method using (BSA-Fe3O4 MNPs)-HPLC and HSCCC is a quick, efficient, and reproductive technique to isolate potentially bioactive compounds from the complex mixture system of natural products. And the usage of off-line 2D-HSCCC and introduction of chelating metal ion into solvent system are effective ways to implement HSCCC separations in complex samples.
在这项研究中,从聚果酸乙酯提取物中分离牛血清白蛋白(BSA)结合物时,开发了离线二维(2D)络合高速逆流色谱(HSCCC)。提出了BSA 功能化氧化铁磁性纳米粒子与高效液相色谱-串联质谱联用((BSA-Fe3O4 MNPs)-HPLC-MS/MS)实验的 BSA 靶向策略。在正交分离系统中,采用正相 HSCCC 以 0.01mol/L 铜离子作为水相络合剂进行第一维分离,同时采用双循环 HSCCC、反相 HSCCC 以 0.1mol/L 铜离子作为第二维分离。包括两对顺反异构体,共分离得到 7 种 BSA 结合物,包括 3,5,7-三羟基色酮(1)、杨梅素(2)、N-顺式对羟基肉桂酰基酪氨酸(3)、N-顺式阿魏酰基酪氨酸(4)、N-反式对羟基肉桂酰基酪氨酸(5)、N-反式阿魏酰基酪氨酸(6)和一种未知化合物(7)。这些化合物的纯度均超过 95.0%,通过 HPLC 测定。通过研究它们与铜离子的关系,还考察了这七种化合物的络合 HSCCC 行为。结果表明,使用(BSA-Fe3O4 MNPs)-HPLC 和 HSCCC 的组合方法是从天然产物复杂混合物体系中分离潜在生物活性化合物的快速、高效、可再生技术。离线 2D-HSCCC 的使用和将螯合金属离子引入溶剂系统是在复杂样品中实施 HSCCC 分离的有效方法。