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Distribution and Dynamics of Adamantanes in a Lipid Bilayer

机译:脂质双层中金刚烷类化合物的分布和动力学

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摘要

The adamantanes are a class of compounds that have found use in the treatment of influenza A and Parkinson's disease, among others. The mode of action for influenza A is based on the adamantanes' interaction with the transmembrane M2 channel, whereas the treatment of Parkinson's disease is thought to relate to a channel block of N-methyl-d-aspartate receptors. An understanding of how these compounds interact with the lipid bilayer is thus of great interest. We used molecular-dynamics simulations to calculate the potential of mean force of adamantanes in a lipid bilayer. Our results demonstrate a preference for the interfacial region of the lipid bilayer for both protonated and deprotonated species, with the protonated species proving significantly more favorable. However, the protonated species have a large free-energy barrier in the center of the membrane. In contrast, there is no barrier (compared with aqueous solution) at the center of the bilayer for deprotonated species, suggesting that the permeant species is indeed the neutral form, as commonly assumed. We discuss the results with respect to proposed mechanisms of action and implications for drug-delivery in general.
机译:金刚烷类是一类已发现可用于治疗甲型流感和帕金森氏病的化合物。甲型流感的作用方式基于金刚烷与跨膜M2通道的相互作用,而帕金森氏病的治疗被认为与N-甲基-d-天冬氨酸受体的通道阻滞有关。因此,对这些化合物如何与脂质双层相互作用的理解引起了极大的兴趣。我们使用分子动力学模拟来计算脂质双层中金刚烷的平均作用力。我们的研究结果表明,质子化和去质子化的物种都偏爱脂质双层的界面区域,而质子化的物种被证明更为有利。但是,质子化的物质在膜的中心具有较大的自由能垒。相反,对于去质子化的物质,双层的中心没有屏障(与水溶液相比),这表明渗透的物质确实是中性形式,这是通常假定的。我们讨论与拟议的作用机制有关的结果及其对一般药物交付的影响。

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