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使用分子动力学模拟研究中性和质子化他莫昔芬与 DPPC 脂质双层的相互作用。

Interaction of neutral and protonated Tamoxifen with the DPPC lipid bilayer using molecular dynamics simulation.

机构信息

Department of Cell and Molecular Biology, Faculty of Biological Sciences, Kharazmi University, Tehran, Iran.

出版信息

Steroids. 2023 Jun;194:109225. doi: 10.1016/j.steroids.2023.109225. Epub 2023 Mar 21.

Abstract

Tamoxifen as an antiestrogen is successfully applied for the clinical treatment of breast cancer in pre- and post-menopausal women. Due to the side effects related to the oral administration of Tamoxifen (such as deep vein thrombosis, pulmonary embolism, hot flushes, ocular disturbances and some types of cancer), liposomal drug delivery is recommended for taking this drug. Drug encapsulation in a liposomal or lipid drug delivery system improves the pharmacokinetic and pharmacodynamic properties. In this regard, we carried out 200-ns molecular dynamics (MD) simulations for three systems (pure DPPC and neutral and protonated Tamoxifen-loaded DPPC). Here, DPPC is a model lipid bilayer to provide us with conditions like liposomal drug delivery systems to investigate the interactions between Tamoxifen and DPPC lipid bilayers and to estimate the preferred location and orientation of the drug molecule inside the bilayer membrane. Properties such as area per lipid, membrane thickness, lateral diffusion coefficient, order parameters and mass density, were surveyed. With insertion of neutral and protonated Tamoxifen inside the DPPC lipid bilayers, area per lipid and membrane thickness increased slightly. Also, Tamoxifen induce ordering of the hydrocarbon chains in DPPC bilayer. Analysis of MD trajectories shows that neutral Tamoxifen is predominantly found in the hydrophobic tail region, whereas protonated Tamoxifen is located at the lipid-water interface (polar region of DPPC lipid bilayers).

摘要

他莫昔芬作为一种抗雌激素,成功地应用于绝经前后妇女的乳腺癌临床治疗。由于他莫昔芬口服的副作用(如深静脉血栓形成、肺栓塞、热潮红、眼部障碍和某些类型的癌症),建议使用脂质体药物传递系统来服用这种药物。药物包封在脂质体或脂质药物传递系统中可以改善药代动力学和药效学性质。在这方面,我们对三个系统(纯 DPPC 和中性及质子化的他莫昔芬负载 DPPC)进行了 200-ns 分子动力学(MD)模拟。在这里,DPPC 是一种模型脂质双层,为我们提供了类似于脂质体药物传递系统的条件,以研究他莫昔芬与 DPPC 脂质双层之间的相互作用,并估计药物分子在双层膜内的优先位置和取向。研究了面积比、膜厚度、侧向扩散系数、序参数和质量密度等性质。中性和质子化的他莫昔芬插入 DPPC 脂质双层后,面积比和膜厚度略有增加。此外,他莫昔芬诱导 DPPC 双层中烃链的有序化。MD 轨迹分析表明,中性他莫昔芬主要存在于疏水区,而质子化的他莫昔芬位于脂质-水界面(DPPC 脂质双层的极性区)。

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