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首页> 外文期刊>Journal of Biomolecular Structure and Dynamics >Effects of cholesterol concentration on the interaction of cytarabine with lipid membranes: a molecular dynamics simulation study
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Effects of cholesterol concentration on the interaction of cytarabine with lipid membranes: a molecular dynamics simulation study

机译:胆固醇浓度对阿糖胞苷与脂质膜相互作用的影响:分子动力学模拟研究

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摘要

Liposomal cytarabine, DepoCyt, is a chemotherapy agent which is used in cancer treatment. This form of cytarabine has more efficacy and fewer side effects relative to the other forms. Since DepoCyt contains the cytarabine encapsulated within phosphatidylcholine and the sterol molecules, we modeled dioleoylphosphatidylcholine (DOPC)/cholesterol bilayer membrane as a carrier for cytarabine to study drug-bilayer interactions. For this purpose, we performed a series of united-atom molecular dynamics (MD) simulations for 25 ns to investigate the interactions between cytarabine and cholesterol-containing DOPC lipid bilayers. Only the uncharged form of cytarabine molecule was investigated. In this study, different levels of the cholesterol content (0, 20, and 40%) were used. MD simulations allowed us to determine dynamical and structural properties of the bilayer membrane and to estimate the preferred location and orientation of the cytarabine molecule inside the bilayer membrane. Properties such as membrane thickness, area per lipid, diffusion coefficient, mass density, bilayer packing, order parameters, and intermolecular interactions were examined. The results show that by increasing the cholesterol concentration in the lipid bilayers, the bilayer thickness increases and area per lipid decreases. Moreover, in accordance with the experiments, our calculations show that cholesterol molecules have ordering effect on the hydrocarbon acyl chains. Furthermore, the cytarabine molecule preferentially occupies the polar region of the lipid head groups to form specific interactions (hydrogen bonds). Our results fully support the experimental data. Our finding about drug-bilayer interaction is crucial for the liposomal drug design.
机译:脂质体阿糖胞苷(DepoCyt)是用于癌症治疗的化学治疗剂。相对于其他形式,这种形式的阿糖胞苷具有更高的功效和更少的副作用。由于DepoCyt包含封装在磷脂酰胆碱和固醇分子中的阿糖胞苷,因此我们将油酰磷脂酰胆碱(DOPC)/胆固醇双层膜建模为阿糖胞苷的载体,以研究药物-双层相互作用。为此,我们进行了25 ns的一系列联合原子分子动力学(MD)模拟,以研究阿糖胞苷与含胆固醇的DOPC脂质双层之间的相互作用。仅研究了阿糖胞苷分子的不带电荷形式。在这项研究中,使用了不同水平的胆固醇含量(0%,20%和40%)。 MD模拟使我们能够确定双层膜的动力学和结构性质,并估计双层膜内阿糖胞苷分子的优选位置和取向。检查了诸如膜厚度,每个脂质的面积,扩散系数,质量密度,双层堆积,有序参数和分子间相互作用等性质。结果表明,通过增加脂质双层中的胆固醇浓度,双层厚度增加,每个脂质的面积减少。此外,根据实验,我们的计算表明胆固醇分子对烃酰基链具有排序作用。此外,阿糖胞苷分子优先占据脂质头基团的极性区域以形成特异性相互作用(氢键)。我们的结果完全支持实验数据。我们关于药物-双层相互作用的发现对于脂质体药物设计至关重要。

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