| Literature DB >> 23467197 |
Yun Zeng1, Gang Liu, Ying Ma, Xiaoyuan Chen, Yoichiro Ito.
Abstract
A new series of organic-high ionic strength aqueous two-phase solvents systems was designed for separation of highly polar compounds by spiral high-speed counter-current chromatography. A total of 21 solvent systems composed of 1-butanol-ethanol-saturated ammonium sulfate-water at various volume ratios are arranged according to an increasing order of polarity. Selection of the two-phase solvent system for a single compound or a multiple sample mixture can be achieved by two steps of partition coefficient measurements using a graphic method. The capability of the method is demonstrated by optimization of partition coefficient for seven highly polar samples including tartrazine (K=0.77), tryptophan (K=1.00), methyl green (K= 0.93), tyrosine (0.81), metanephrine (K=0.89), tyramine (K=0.98), and normetanephrine (K=0.96). Three sulfonic acid components in D&C Green No. 8 were successfully separated by HSCCC using the graphic selection of the two-phase solvent system.Entities:
Keywords: Catecholamines; Graphic optimization of partition coefficient; Organic-high ionic strength aqueous solvent system series; Spiral high-speed counter-current chromatography; Sulfonic acids; Zwitter ions
Year: 2012 PMID: 23467197 PMCID: PMC3586324
Source DB: PubMed Journal: J Liq Chromatogr Relat Technol ISSN: 1082-6076 Impact factor: 1.312