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手性配体交换毛细管电色谱双配体拆分 D,L-氨基酸对映体。

Chiral ligand exchange capillary electrochromatography with dual ligands for enantioseparation of D,L-amino acids.

机构信息

Beijing National Laboratory of Molecular Sciences, Key Laboratory of Analytical Chemistry for Living Biosystems, Institute of Chemistry, Chinese Academy of Sciences, No. 2 Zhongguancun Beiyijie, Beijing 100190, PR China; College of Chemical and Pharmaceutical, Hebei University of Science and Technology, No. 26 Yuxiang road, Shijiazhuang 050018, PR China.

Beijing National Laboratory of Molecular Sciences, Key Laboratory of Analytical Chemistry for Living Biosystems, Institute of Chemistry, Chinese Academy of Sciences, No. 2 Zhongguancun Beiyijie, Beijing 100190, PR China; School of Chemical Sciences, University of Chinese Academy of Sciences, No. 19 A Yuquanlu, Beijing 100049, PR China.

出版信息

Talanta. 2019 Mar 1;194:430-436. doi: 10.1016/j.talanta.2018.10.059. Epub 2018 Oct 17.

Abstract

Utilizing block copolymers as coatings, a protocol of chiral ligand exchange capillary electrochromatography (CLE-CEC) protocol was designed and developed with dual ligands for D,L-amino acids enantioseparation. Four block copolymers including poly maleic anhydride-co-styrene-co-N-methacryloyl-L-histidine methyl ester [P(MAn-St-MAH)], poly maleic anhydride-co-styrene-co-N-methacryloyl-L-lysine methyl ester [P(MAn-St-MAL)], poly maleic anhydride-co-styrene-co-N-methacryloyl-L-phenylalanine methyl ester [P(MAn-St-MAP)] and poly maleic anhydride-co-styrene-co-N-methacryloyl-L-threonine methyl ester [P(MAn-St-MAT)] were synthesized by reversible addition fragmentation chain transfer polymerization reaction. Key factors affecting the enantioresolution were optimized, including the concentration of Zn (II) central ion, pH value of buffer solution and monomers of the block copolymers. The enantioresolution of the proposed CLE-CEC system could be enhanced dramatically by employing P(MAn-St-MAH) as the immobilized chiral ligand and by coordinating the synergistic effect of free ligand in buffer solution. The principle of improved enantioresolution of the CLE-CEC system with dual ligands was discussed. Well enantioseparation was successfully realized with 7 pairs of D,L-amino acids enantiomers baseline separation and 5 pairs part separation. For quantitative analysis of D,L-alanine, a good linearity was established in the range of 9.4 μM to 1.5 mM (r = 0.997) with the limits of detection (LODs) 3.7 μM of D-alanine, 2.0 μM for L-alanine, and limits of quantification (LOQs) 9.0 μM for D-alanine and 6.0 μM for L-alanine. The peak area and migration time reproducibility (n = 6) were 4.1% and 3.5% for D-alanine, 3.7% and 3.1% for L-alanine. Further, the enzyme kinetics study of alanine aminotransferase was investigated with the constructed CLE-CEC system.

摘要

利用嵌段共聚物作为涂层,设计并开发了一种具有双配体的手性配体交换胶束电动色谱(CLE-CEC)协议,用于拆分 D,L-氨基酸。通过可逆加成-断裂链转移聚合反应合成了四种嵌段共聚物,包括马来酸酐-苯乙烯-共-N-甲基丙烯酰基-L-组氨酸甲酯[P(MAn-St-MAH)]、马来酸酐-苯乙烯-共-N-甲基丙烯酰基-L-赖氨酸甲酯[P(MAn-St-MAL)]、马来酸酐-苯乙烯-共-N-甲基丙烯酰基-L-苯丙氨酸甲酯[P(MAn-St-MAP)]和马来酸酐-苯乙烯-共-N-甲基丙烯酰基-L-苏氨酸甲酯[P(MAn-St-MAT)]。优化了影响对映体拆分的关键因素,包括 Zn(II)中心离子的浓度、缓冲溶液的 pH 值和嵌段共聚物的单体。通过采用 P(MAn-St-MAH)作为固定化手性配体,并协调缓冲溶液中游离配体的协同作用,可显著增强所提出的 CLE-CEC 系统的对映体拆分效果。讨论了采用双配体制备 CLE-CEC 系统提高对映体拆分效果的原理。成功实现了 7 对 D,L-氨基酸对映体基线分离和 5 对部分分离。对于 D,L-丙氨酸的定量分析,在 9.4μM 至 1.5mM 的范围内建立了良好的线性关系(r=0.997),D-丙氨酸的检出限(LOD)为 3.7μM,L-丙氨酸的检出限为 2.0μM,定量限(LOQ)为 9.0μM 用于 D-丙氨酸和 6.0μM 用于 L-丙氨酸。D-丙氨酸和 L-丙氨酸的峰面积和迁移时间重现性(n=6)分别为 4.1%和 3.5%。此外,还利用所构建的 CLE-CEC 系统研究了丙氨酸氨基转移酶的酶动力学。

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