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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Permeation of Small Molecules through a Lipid Bilayer: A Computer Simulation Study
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Permeation of Small Molecules through a Lipid Bilayer: A Computer Simulation Study

机译:小分子通过脂质双层的渗透:计算机模拟研究。

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To reach their biological target, drugs have to cross cell membranes, and understanding passive membrane permeation is therefore crucial for rational drug design. Molecular dynamics simulations offer a powerful way of studying permeation at the single molecule level, yielding detailed dynamic and thermodynamic data. Biological membranes have a very inhomogeneous character and a highly anisotropic behavior. Starting from a computer model proven to reproduce the physical properties of such a complex system, the permeation of small organic molecules across a lipid bilayer model has been studied. Free energy profiles and diffusion coefficients along the bilayer normal have been calculated for small organic molecules by means of all-atom molecular dynamics (MD) simulations constraining the compounds at chosen depths inside the membrane. These data also allow for the calculation of permeability coefficients, the results for which have been compared with experimental data. The calculated permeability coefficients are generally 1 order of magnitude larger than the equivalent experimental data, but the molecules' relative permeability coefficients are reproduced.
机译:为了达到其生物学目标,药物必须穿过细胞膜,因此了解被动膜渗透对于合理的药物设计至关重要。分子动力学模拟为研究单分子水平的渗透提供了一种有力的方法,可提供详细的动力学和热力学数据。生物膜具有非常不均匀的特性和高度各向异性的行为。从被证明可以重现这种复杂系统物理特性的计算机模型开始,已经研究了小有机分子在脂质双层模型中的渗透。借助全原子分子动力学(MD)模拟,通过将化合物限制在膜内选定深度处,可以计算出有机小分子沿双层法线的自由能分布和扩散系数。这些数据还允许计算渗透系数,将其结果与实验数据进行了比较。计算出的渗透系数通常比等效的实验数据大1个数量级,但是可以再现分子的相对渗透系数。

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