Department of Physical and Analytical Chemistry, School of Pharmacy, Kinjo Gakuin University, 2-1723 Omori, Moriyama-ku, Nagoya, Aichi 463-8521, Japan.
J Pharm Biomed Anal. 2010 Apr 6;51(5):1154-60. doi: 10.1016/j.jpba.2009.11.010. Epub 2009 Nov 13.
In the field of pharmaceutical and biomedical analysis of peptides, a rapid on-line detection and identification for a methodology have been required for the discovery of new biological active products. In this study, a high-speed counter-current chromatography with electrospray mass spectrometry (HSCCC/ESI-MS) was developed for the on-line detection and purification of polypeptide antibiotics of enramycin-A and -B. The analytes were purified on HSCCC model CCC-1000 (multi-layer coil planet centrifuge) with a volatile solvent of two-phase system composed of n-butanol/hexane/0.05% aqueous trifluoroacetic acid solution (43/7/50, V/V/V), and detected on an LCMS-2010EV quadrupole mass spectrometer fitted with an ESI source system in positive ionization following scan mode (m/z 100-2000). The HSCCC/ESI-MS peaks indicated that enramycin-A (major m/z 786 M+3H and minor m/z 1179 M+2H) and enramycin-B (major m/z 791 M+3H and minor m/z 1185 M+2H) have the peak resolution value of 2.9 from 15mg of loaded enramycin powder. The HSCCC collected amounts of the peak fractions were additionally 4.3mg (enramycin-A), and 5.9mg (enramycin-B), respectively. These purified substances were analyzed by LC/ESI-MS with scan positive mode. Based on the LC/ESI-MS chromatograms and spectra of the fractions, enramycin-A and -B were estimated to be over 95% purity. The overall results indicate that this approach of HSCCC/ESI-MS is a powerful technique for the purification and identification of bioactive peptides.
在药物和生物医学分析领域,需要一种快速的在线检测和识别方法,以发现新的生物活性产品。在这项研究中,开发了一种高效逆流色谱与电喷雾质谱联用(HSCCC/ESI-MS),用于在线检测和纯化恩拉霉素-A 和 -B 的多肽抗生素。分析物在 HSCCC 模型 CCC-1000(多层线圈行星离心机)上用两相系统的挥发性溶剂进行纯化,两相系统由正丁醇/己烷/0.05%三氟乙酸水溶液(43/7/50,V/V/V)组成,并在 LCMS-2010EV 四极杆质谱仪上用 ESI 源系统在正离子化后进行扫描模式(m/z 100-2000)进行检测。HSCCC/ESI-MS 峰表明,恩拉霉素-A(主要 m/z 786 M+3H和次要 m/z 1179 M+2H)和恩拉霉素-B(主要 m/z 791 M+3H和次要 m/z 1185 M+2H)的峰分辨率值为 2.9,从 15mg 加载的恩拉霉素粉末中。HSCCC 收集的峰部分量分别为 4.3mg(恩拉霉素-A)和 5.9mg(恩拉霉素-B)。这些纯化物质通过 LC/ESI-MS 用扫描正模式进行分析。根据峰部分的 LC/ESI-MS 色谱图和光谱,恩拉霉素-A 和 -B 的纯度估计超过 95%。总体结果表明,这种 HSCCC/ESI-MS 方法是一种用于生物活性肽的纯化和鉴定的强大技术。