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Line tension of the pore edge in phospholipid/cholesterol bilayer from stretch molecular dynamics simulation

机译:拉伸分子动力学模拟研究磷脂/胆固醇双层膜中孔边缘的线张力

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References(45) The line tension of the pore in a phospholipid bilayer is important for pore-mediated molecular transport techniques. To understand the cholesterol effects on the line tension of the pore edge at the molecular level, we perform molecular dynamics simulations of phospholipid bilayers with a pore containing cholesterol in different concentrations (0, 20, and 40 mol%). The bilayer with a pore is prepared by using an equibiaxial stretching simulation. The stretched bilayer with a pore is subsequently compressed and the pore spontaneously closes when the applied areal strain of the bilayer is below a certain value. Using the pore closure areal strain and a free energy model of a stretched bilayer with a pore, the upper and lower limits of the line tensions for the bilayers containing cholesterol at 0, 20, and 40 mol% are estimated to be 17.0-48.2, 54.5-100, and 170-261 pN, respectively. The increasing tendency of the line tension qualitatively agrees with that observed experimentally. The pores in the cholesterol-containing bilayers are lined with several cholesterol molecules, which might increase the bending rigidity of the pore edge, and result in the higher line tension of the cholesterol-containing bilayer. The considerable dependency of the line tension on the bilayer compositions might be useful to explain the large variations of the transduction efficiency observed with sonoporation treatment.
机译:参考文献(45)磷脂双层中孔的线张力对于孔介导的分子转运技术很重要。为了了解胆固醇在分子水平上对孔边缘线张力的影响,我们对磷脂双层进行了分子动力学模拟,该双层磷脂的孔中含有不同浓度(0、20和40 mol%)的胆固醇。通过使用等双轴拉伸模拟来制备具有孔的双层。随后,拉伸的具有孔的双层被压缩,并且当所施加的双层的面应变低于一定值时,孔自发闭合。使用孔隙闭合面应变和带有孔的拉伸双层的自由能模型,含胆固醇为0、20和40 mol%的双层的线张力的上限和下限估计为17.0-48.2, 54.5-100和170-261 pN。线张力的增加趋势在质量上与实验观察到的一致。含胆固醇的双层中的孔衬有几个胆固醇分子,这可能会增加孔边缘的弯曲刚度,并导致含胆固醇的双层中较高的线张力。线张力对双层组合物的显着依赖性可能有助于解释在声孔处理中观察到的转导效率的巨大变化。

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