Yin Tian, Cao Xiuxiu, Liu Xiaolin, Wang Jian, Shi Caihong, Su Jia, Zhang Yu, Gou Jingxin, He Haibing, Guo Haiyan, Tang Xing, Zhao Yuqing
School of Functional food and Wine, Shenyang Pharmaceutical University, Shenyang 110016, China; School of Chinese Materia Media, Shenyang Pharmaceutical University, Shenyang 110016, China.
School of Chinese Materia Media, Shenyang Pharmaceutical University, Shenyang 110016, China.
Colloids Surf B Biointerfaces. 2016 Oct 1;146:902-9. doi: 10.1016/j.colsurfb.2016.07.040. Epub 2016 Jul 20.
In this study, molecular interactions between the anti-cancer agent 20(R)-25-methoxyl-dammarane-3β, 12β, 20-triol (AD-1) and phospholipid 1,2-Distearoyl-sn-glycero-3-phosphocholine (DSPC) were investigated using the Langmuir film balance technique. The characteristics of binary Langmuir monolayers consisting of DSPC and AD-1 were conducted on the basis of the surface pressure-area per molecule (π-A) isotherms. It was found that the drug was able to become efficiently inserted into preformed DSPC monolayers, indicating a preferential interaction between AD-1 and DSPC. For the examined lateral pressure at 20mN/m, the largest negative values of ΔGex were found for the AD-1/DSPC monolayer, which should be the most stable. Based on the calculated values of ΔGex, we found that the AD-1/DSPC systems exhibited the best mixed characteristics when the molar fraction of the AD-1 was 0.8; at that relative concentration, the AD-1 molecules can mix better and interact with the phospholipid molecules. In addition, the drug-DSPC binary supramolecular structure was also deposited on the mica plates as shown by atomic force microscopy (AFM). Finally, molecular docking calculations explained satisfactorily that, based on the conformations interactions (conformation recognition), even at an AD-1/DSPC molar ratio as high as 8:2, the interfacial stabilization of the AD-1/DSPC system was fairly strong due to hydrophobic interactions. A higher loading capacity of DSPC might be possible, as it is associated with a more flexible geometrical environment, which allows these supramolecular structures to accept larger increases in drug loading upon steric binding.
在本研究中,使用朗缪尔膜天平技术研究了抗癌剂20(R)-25-甲氧基-达玛烷-3β,12β,20-三醇(AD-1)与磷脂1,2-二硬脂酰-sn-甘油-3-磷酸胆碱(DSPC)之间的分子相互作用。基于每分子表面压力-面积(π-A)等温线,对由DSPC和AD-1组成的二元朗缪尔单分子层的特性进行了研究。结果发现,该药物能够有效地插入预先形成的DSPC单分子层中,这表明AD-1与DSPC之间存在优先相互作用。对于20mN/m的测试侧向压力,AD-1/DSPC单分子层的ΔGex值为最大负值,这应该是最稳定的。基于计算得到的ΔGex值,我们发现当AD-1的摩尔分数为0.8时,AD-1/DSPC体系表现出最佳的混合特性;在该相对浓度下,AD-1分子能够更好地混合并与磷脂分子相互作用。此外,如原子力显微镜(AFM)所示,药物-DSPC二元超分子结构也沉积在云母片上。最后,分子对接计算令人满意地解释了,基于构象相互作用(构象识别),即使在AD-1/DSPC摩尔比高达8:2时,由于疏水相互作用,AD-1/DSPC体系的界面稳定性仍然相当强。DSPC可能具有更高的负载能力,因为它与更灵活的几何环境相关,这使得这些超分子结构在空间结合时能够接受更大的药物负载增加。