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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Molecular dynamics simulation of structural changes of lipid bilayers induced by shock waves: Effects of incident angles.
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Molecular dynamics simulation of structural changes of lipid bilayers induced by shock waves: Effects of incident angles.

机译:分子动力学模拟的冲击波引起的脂质双层结构变化:入射角的影响。

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Unsteady and nonequilibrium molecular dynamics simulations of the response of dipalmitoylphosphatidylcholine (DPPC) bilayers to the shock waves of various incident angles are presented. The action of an incident shock wave is modeled by adding a momentum in an oblique direction to water molecules adjacent to a bilayer. We thereby elucidate the effects of incident shock angles on (i) collapse and rebound of the bilayer, (ii) lateral displacement of headgroups, (iii) tilts of lipid molecules, (iv) water penetration into the hydrophobic region of the bilayer, and (v) momentum transfer across the bilayer. The number of water molecules delivered into the hydrophobic region is found to be insensitive to incident shock angles. The most important structural changes are the lateral displacement of headgroups and tilts of lipid molecules, which are observed only in the half of the bilayer directly exposed to a shock wave for all incident shock angles studied here. As a result, only the normal component of the added oblique momentum is substantially transferred across the bilayer. This also suggests that the irradiation by shock waves may induce a jet-like streaming of the cytoplasm toward the nucleus.
机译:提出了二棕榈酰磷脂酰胆碱(DPPC)双层对各种入射角冲击波响应的非稳态和非平衡分子动力学模拟。通过向与双层相邻的水分子增加倾斜方向的动量来模拟入射冲击波的作用。因此,我们阐明了入射冲击角对(i)双层的塌陷和反弹,(ii)头基的横向位移,(iii)脂质分子的倾斜,(iv)水渗透到双层的疏水区中以及(v)跨双层的动量传递。发现输送到疏水区域中的水分子的数量对入射冲击角不敏感。最重要的结构变化是头基的侧向位移和脂质分子的倾斜,在此处研究的所有入射冲击角中,仅在直接暴露于冲击波的双层的一半中才能观察到。结果,仅所添加的倾斜动量的法向分量基本上在双层上转移。这也表明,冲击波的照射可能引起细胞质向核喷射状流动。

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