Pang Xiaocong, Wang Lin, Kang De, Zhao Ying, Wu Song, Liu Ai-Lin, Du Guan-Hua
Institute of Materia Medica, Chinese Academy of Medical Sciences and Peking Union Medical College, Xian Nong Tan Street, Beijing 100050, China.
Beijing Key Laboratory of Drug Target Research and Drug Screening, Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing 100050, China.
Molecules. 2017 Jul 25;22(8):1246. doi: 10.3390/molecules22081246.
In our study, we attempted to investigate the influences of P-glycoprotein (P-gp) on DL0410, a novel synthetic molecule for Alzheimer's disease (AD) treatment, for intestinal absorption and blood-brain barrier permeability in vitro and related binding mechanisms in silico. Caco-2, MDCK, and MDCK-MDR1 cells were utilized for transport studies, and homology modelling of human P-gp was built for further docking study to uncover the binding mode of DL0410. The results showed that the apparent permeability (Papp) value of DL0410 was approximately 1 × 10 cm/s, indicating the low permeability of DL0410. With the presence of verapamil, the directional transport of DL0410 disappeared in Caco-2 and MDCK-MDR1 cells, suggesting that DL0410 should be a substrate of P-gp, which was also confirmed by P-gp ATPase assay. In addition, DL0410 could competitively inhibit the transport of Rho123, a P-gp known substrate. According to molecular docking, we also found that DL0410 could bind to the drug binding pocket (DBP), but not the nucleotide binding domain (NBD). In conclusion, DL0410 was a substrate as well as a competitive inhibitor of P-gp, and P-gp had a remarkable impact on the intestine and brain permeability of DL0410, which is of significance for drug research and development.
在我们的研究中,我们试图研究P-糖蛋白(P-gp)对DL0410(一种用于治疗阿尔茨海默病(AD)的新型合成分子)体外肠道吸收和血脑屏障通透性的影响以及计算机模拟的相关结合机制。利用Caco-2、MDCK和MDCK-MDR1细胞进行转运研究,并构建人P-gp的同源模型用于进一步的对接研究以揭示DL0410的结合模式。结果表明,DL0410的表观渗透率(Papp)值约为1×10 cm/s,表明DL0410的渗透率较低。在维拉帕米存在的情况下,DL0410在Caco-2和MDCK-MDR1细胞中的定向转运消失,表明DL0410应该是P-gp的底物,这也通过P-gp ATP酶测定得到证实。此外,DL0410可以竞争性抑制已知的P-gp底物Rho123的转运。根据分子对接,我们还发现DL0410可以与药物结合口袋(DBP)结合,但不能与核苷酸结合域(NBD)结合。总之,DL0410是P-gp的底物以及竞争性抑制剂,并且P-gp对DL0410的肠道和脑通透性有显著影响,这对药物研发具有重要意义。