Chiral separations using the macrocyclic antibiotics: a review

替考拉宁 糖肽 化学 糖肽抗生素 瑞斯托西汀 高效液相色谱法 色谱法 抗生素 组合化学 万古霉素 生物化学 细菌 血小板 血小板聚集 生物 免疫学 遗传学 金黄色葡萄球菌
作者
Timothy J. Ward,Alton B. Farris
出处
期刊:Journal of Chromatography A [Elsevier BV]
卷期号:906 (1-2): 73-89 被引量:303
标识
DOI:10.1016/s0021-9673(00)00941-9
摘要

The macrocyclic antibiotics have recently gained popularity as chiral selectors in CE, HPLC and TLC. The macrocyclic antibiotics used for chiral separations include the ansamycins, the glycopeptides, and the polypeptide antibiotic thiostrepton. Although not strictly considered macrocyclic antibiotics, the aminoglycosides are antibiotics that have been used for chiral separations in CE. More chiral analytes have been resolved using the glycopeptides than with the other macrocyclic antibiotics combined. The glycopeptides vancomycin, ristocetin A and teicoplanin have been used extensively as chiral selectors in CE, with ristocetin A appearing to be the most useful chiral selector followed by vancomycin and teicoplanin, respectively. The macrocyclic antibiotics have also been used as chiral bonded phases in HPLC, and HPLC stationary phases based on vancomycin, ristocetin A and teicoplanin have been commercialized. Ristocetin A seems to be the most useful glycopeptide HPLC bonded phase, but its greater expense can be a drawback. The macrocyclic antibiotics have been used with micelles to improve efficiency, provide unique selectivity, and extend the range of separations to neutral solutes. Changing the macrocyclic antibiotic used in CE or HPLC can significantly alter the enantioselectivity of the separations. In fact, the glycopeptide antibiotics are complementary to one another, where if a partial enantioresolution is obtained with one glycopeptide, there is a high probability that a baseline or better separation can be obtained with another.
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