| Literature DB >> 29224841 |
Chao Han1, Wenli Wang1, Guimin Xue1, Dingqiao Xu1, Tianyu Zhu1, Shanshan Wang1, Pei Cai1, Jianguang Luo2, Lingyi Kong3.
Abstract
Cu(II) ion was selected as an additive to improve the enantioseparation efficiency of three dihydroflavone enantiomers in high-speed counter-current chromatography (HSCCC), using hydroxypropyl-β-cyclodextrin (HP-β-CyD) as the chiral selector. The influences of important parameters, including the metal ion, the concentrations of HP-β-CyD and the Cu(II) ion, and the sample size were investigated. Under optimal conditions, three dihydroflavone enantiomers, including (±)-hesperetin, (±)-naringenin, and (±)-farrerol, were successfully enantioseparated. The chiral recognition mechanism was investigated. The enantioseparation was attributed to the different thermodynamic stabilities of the binary complexes of HP-β-CyD and (±)-hesperetin, and Cu(II) ion could enhance this difference by forming ternary complexes with the binary complexes. This Cu(II) ion-improved complexation HSCCC system exhibited improved performance for chiral separation, and therefore it has great application potential in the preparative enantioseparation of other compounds with similar skeletons.Entities:
Keywords: Complexation countercurrent chromatography; Dihydroflavone enantiomers; Enantioseparation; Metal ion; Separation mechanism
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Year: 2017 PMID: 29224841 DOI: 10.1016/j.chroma.2017.12.006
Source DB: PubMed Journal: J Chromatogr A ISSN: 0021-9673 Impact factor: 4.759