Young Joshua E, Matyska Maria T, Azad Anil K, Yoc Sergio E, Pesek Joseph J
MicroSolv Technology Corporation, South New Berlin, NY 13843, USA.
Department of Chemistry, San José State University, San José, CA 95192, USA.
J Liq Chromatogr Relat Technol. 2013 Apr 1;36(7):926-942. doi: 10.1080/10826076.2012.678457.
Formulation extracts of tetracycline hydrochloride (HCl), minocycline hydrochloride (HCl), and doxycycline hyclate were degraded by strong acidic conditions and heating. Subsequently, components of the extracts were separated by Bidentate C8, Phenyl Hydride and Cholesterol (UDC) HPLC columns operating in the reverse phase mode. The Phenyl Hydride column was able to baseline separate minocycline from the observed degradant, while partial or total co-elution was observed with the other two columns using otherwise identical method conditions. For both the degraded tetracycline HCl and doxycycline hyclate extracts, the UDC column gave the best resolution for the critical pair. The findings suggest that the postulated secondary retention mechanisms of π-π interactions from the Phenyl Hydride and shape selectivity from the UDC can provide superior resolution for structurally similar analytes compared to hydrophobic interactions alone.
盐酸四环素、盐酸米诺环素和多西环素的制剂提取物在强酸性条件和加热下会发生降解。随后,提取物的成分通过在反相模式下运行的双齿C8、苯基己基和胆固醇(UDC)高效液相色谱柱进行分离。苯基己基柱能够将米诺环素与观察到的降解产物进行基线分离,而在其他方法条件相同的情况下,使用另外两根柱子时观察到了部分或完全共洗脱现象。对于降解的盐酸四环素和多西环素提取物,UDC柱对关键对的分离效果最佳。研究结果表明,与仅靠疏水相互作用相比,苯基己基柱假定的π-π相互作用二级保留机制和UDC柱的形状选择性能够为结构相似的分析物提供更高的分离度。