School of Mechanical Engineering, Tianjin University of Commerce, Tianjin, 300134, People's Republic of China.
Tianjin Institute of Medical and Pharmaceutical Sciences, Tianjin, 300020, People's Republic of China.
J Mol Model. 2022 Aug 19;28(9):261. doi: 10.1007/s00894-022-05266-w.
AZD3759 is an epidermal growth factor receptor inhibitor with good blood-brain barrier permeability, demonstrating encouraging activity against central nervous system metastases. However, the underlying mechanism was still unclear. In this study, the interaction between AZD3759 and membrane was studied with 1,2-dimyristoyl-sn-glycero-3-phosphocholine bilayer as a model lipid. Both the cationic and neutral state of AZD3759 were considered in the simulations, and the results show that cationic AZD3759 forms more hydrogen bonds with bilayer than neutral AZD3759, and Coulombic interaction has great effects in the transmembrane process of cationic AZD3759. AZD3759 prefers to reside in the interface between the hydrophilic headgroup region and hydrophobic region of bilayer, and the chloroflurobenzene moiety plays a crucial role in the insertion of AZD3759. PMF results suggest that the hydrophobic region of DMPC bilayer is permeable by AZD3759. Understanding the transmembrane mechanism of AZD3759 at molecular level may provide useful information to the design and optimization of anti-tumor drugs with improved BBB penetration. • The penetration mechanism of AZD3759 with DMPC bilayer was studied by molecular dynamics simulations. • Neutral AZD3759 could penetrate deeper into DMPC bilayer than protonated AZD3759. • The chloroflurobenzene moiety plays a significant role in the insertion of AZD3759 into DMPC bilayer. • The electrostatic interaction is the driving force for the initial binding of AZD3759 to DMPC bilayer. • Our findings may enhance the mechanism understanding of drugs with good BBB permeability.
AZD3759 是一种具有良好血脑屏障通透性的表皮生长因子受体抑制剂,对中枢神经系统转移显示出令人鼓舞的活性。然而,其潜在机制尚不清楚。在这项研究中,以 1,2-二肉豆蔻酰-sn-甘油-3-磷酸胆碱双层作为模型脂质,研究了 AZD3759 与膜的相互作用。模拟中考虑了 AZD3759 的阳离子和中性两种状态,结果表明阳离子 AZD3759 与双层形成的氢键比中性 AZD3759 多,库仑相互作用对阳离子 AZD3759 的跨膜过程有很大影响。AZD3759 更喜欢位于双层亲水头区域和疏水区之间的界面处,而氯氟苯部分在 AZD3759 的插入中起着关键作用。PMF 结果表明,DMPC 双层的疏水区可被 AZD3759 穿透。在分子水平上了解 AZD3759 的跨膜机制,可能为设计和优化具有改善 BBB 穿透性的抗肿瘤药物提供有用信息。
研究了 AZD3759 与 DMPC 双层的渗透机制通过分子动力学模拟。
中性 AZD3759 比质子化 AZD3759 能更深地穿透 DMPC 双层。
氯氟苯部分在 AZD3759 插入 DMPC 双层中起着重要作用。
静电相互作用是 AZD3759 与 DMPC 双层初始结合的驱动力。
我们的发现可能增强对具有良好 BBB 通透性的药物的机制理解。