Guo Mingquan, Zhang Suoqing, Song Fengrui, Wang Daowu, Liu Zhiqiang, Liu Shuying
Laboratory of New Drug Research, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun 130022, China.
J Mass Spectrom. 2003 Jul;38(7):723-31. doi: 10.1002/jms.486.
Non-covalent inclusion complexes formed between an anti-inflammatory drug, oleanolic acid (OA), and alpha-, beta- and gamma-cyclodextrins (CDs) were investigated by means of solubility studies and electrospray ionization tandem mass spectrometry (ESI-MS(n)). The order of calculated association constants (K(1 : 1)) of complexes between OA and different CDs in solution is in good agreement with the order of their relative peak intensities and the relative CID energies of the complexes under the same ESI-MS(n) conditions. These results indicate a direct correlation between the behaviors of solution- and gas-phase complexes. ESI-MS can thus be used to evaluate solution-phase non-covalent complexes successfully. The experimental results show that the most stable 1 : 1 inclusion complexes between three CDs and OA can be formed, but 2 : 1 CD-OA complexes can be formed with beta- and gamma-CDs. Multi-component complexes of alpha-CD-OA-beta-CD (1 : 1 : 1), alpha-CD-OA-gamma-CD (1 : 1 : 1) and beta-CD-OA-gamma-CD (1 : 1 : 1) were found in equimolar CD mixtures with excess OA. The formation of 2 : 1 and multi-component 1 : 1 : 1 non-covalent CD-OA complexes indicates that beta- and gamma-CD are able to form sandwich-type inclusion non-covalent complexes with OA. The above results can be partly supported by the relative sizes of OA and CD cavities by molecular modeling calculations. All the complexes allow the detection of gaseous deprotonated CD-OA complexes in the negative ion mode at high abundances. The relative stabilities of the CDs-OA inclusion complexes in the gas phase can be evaluated from the relative CID energies in the ion trap (alpha-CD-OA < beta-CD-OA < gamma-CD-OA) in the negative ion mode.
通过溶解度研究和电喷雾电离串联质谱法(ESI-MS(n)),研究了抗炎药物齐墩果酸(OA)与α-、β-和γ-环糊精(CDs)之间形成的非共价包合物。在相同的ESI-MS(n)条件下,OA与不同CDs在溶液中形成的配合物的计算缔合常数(K(1:1))顺序与它们的相对峰强度以及配合物的相对碰撞诱导解离(CID)能量顺序高度一致。这些结果表明溶液相和气相配合物的行为之间存在直接相关性。因此,ESI-MS可成功用于评估溶液相非共价配合物。实验结果表明,三种CDs与OA之间能形成最稳定的1:1包合物,但β-和γ-CDs能形成2:1的CD-OA配合物。在含有过量OA的等摩尔CD混合物中发现了α-CD-OA-β-CD(1:1:1)、α-CD-OA-γ-CD(1:1:1)和β-CD-OA-γ-CD(1:1:1)的多组分配合物。2:1和多组分1:1:1非共价CD-OA配合物的形成表明β-和γ-CD能够与OA形成夹心型包合非共价配合物。上述结果可通过分子模拟计算中OA和CD空腔的相对大小得到部分支持。所有配合物都能在负离子模式下以高丰度检测到气态去质子化的CD-OA配合物。在负离子模式下,可根据离子阱中的相对CID能量(α-CD-OA < β-CD-OA < γ-CD-OA)评估气相中CDs-OA包合物的相对稳定性。