Chi Liandi, Liu Ruihao, Guo Tao, Wang Manli, Liao Zuhua, Wu Li, Li Haiyan, Wu Deling, Zhang Jiwen
Center for Drug Delivery System, Shanghai Institute of Materia Medica, Chinese Academy of Sciences, Shanghai 201203, China.
Center for Drug Delivery System, Shanghai Institute of Materia Medica, Chinese Academy of Sciences, Shanghai 201203, China; School of Pharmaceutical Sciences, Anhui University of Chinese Medicine, Hefei 230038, China.
Int J Pharm. 2015 Feb 20;479(2):349-56. doi: 10.1016/j.ijpharm.2015.01.005. Epub 2015 Jan 6.
As one of the most important technologies to improve the solubility of poorly water-soluble drugs, the solubilization effects of cyclodextrins (CDs) complexation are, on occasions, not as large as expected, which tends to detract from the wider application of CDs. In this study, a dramatic improvement of the solubility of pseudolaric acid B (PAB) by CDs has been found with a 600 fold increase by HP-β-CD complexation. In addition, the solubility enhancement of PAB by various CDs, including α-CD, β-CD, γ-CD, HP-β-CD and SBE-β-CD was investigated by phase solubility studies. The inclusion complex of PAB/HP-β-CD was prepared by different methods and characterized by differential scanning calorimetry (DSC), powder X-ray diffractometry (XRD), nuclear magnetic resonance spectroscopy ((1)H NMR) together with molecular simulation. The results indicated that the solubility of PAB was increased to 15.78mgmL(-1) in the presence of 30% HP-β-CD, which is a 600 fold increase compared with that in pure water. And the chemical stability of PAB in PBS (pH 7.4) can be enhanced. The results of DSC and XRD showed the absence of crystallinity in the PAB/HP-β-CD inclusion complex prepared by the saturated water solution method. The results of (1)H NMR together with molecular simulation indicated the conjugated diene side-chain of PAB was included into the cavity of HP-β-CD, with the free energy of -20.34±4.69kJmol(-1). While the enzymatic degradation site of the carboxyl polar bond is located in the hydrophilic outer of HP-β-CD resulted in no significant difference for the enzymatic degradation rate between PAB and PAB/HP-β-CD complexes in rat plasma. In summary, the PAB/HP-β-CD inclusion complex prepared in this study can greatly improve the solubility and chemical stability of PAB, which will result in the in vivo administration of PAB as a liquid solution.
作为提高难溶性药物溶解度的最重要技术之一,环糊精(CDs)包合作用的增溶效果有时并不如预期的大,这往往会影响CDs的更广泛应用。在本研究中,发现CDs可显著提高土槿皮酸B(PAB)的溶解度,通过HP-β-CD包合使其溶解度增加了600倍。此外,通过相溶解度研究考察了α-CD、β-CD、γ-CD、HP-β-CD和SBE-β-CD等各种CDs对PAB溶解度的增强作用。采用不同方法制备了PAB/HP-β-CD包合物,并通过差示扫描量热法(DSC)、粉末X射线衍射法(XRD)、核磁共振光谱法((1)H NMR)以及分子模拟对其进行了表征。结果表明,在30% HP-β-CD存在下,PAB的溶解度增加到15.78mgmL(-1),与纯水中相比增加了600倍。并且PAB在PBS(pH 7.4)中的化学稳定性可以得到提高。DSC和XRD结果表明,通过饱和水溶液法制备的PAB/HP-β-CD包合物中不存在结晶性。(1)H NMR结果以及分子模拟表明,PAB的共轭二烯侧链被包入HP-β-CD的空腔中,自由能为-20.34±4.69kJmol(-1)。而羧基极性键的酶促降解位点位于HP-β-CD的亲水性外部,导致PAB与PAB/HP-β-CD复合物在大鼠血浆中的酶促降解速率无显著差异。综上所述,本研究制备的PAB/HP-β-CD包合物可大大提高PAB的溶解度和化学稳定性,这将使PAB能够以溶液形式进行体内给药。