首页> 外文会议>International Mechanical Engineering Congress and Exposition 2007 >MOLECULAR DYNAMICS SIMULATION STUDIES OF PORE FORMATION IN LIPID BILAYERS IN THE PRESENCE OF DIMETHYLSULFOXIDE
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MOLECULAR DYNAMICS SIMULATION STUDIES OF PORE FORMATION IN LIPID BILAYERS IN THE PRESENCE OF DIMETHYLSULFOXIDE

机译:二甲基亚砜存在下脂质双分子层中孔形成的分子动力学模拟

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We report in this work our observations from detailed atomistic investigations of the interactions between solutions containing 11.3 mol% of dimethylsulfoxide (DMSO) and three fully hydrated bilayers of lipid molecules, (BLMs). The BLMs considered were: dipalmitoyl-phosphatidylcholine (DPPC), palmitoyloleoyl-phosphatidylcholine (POPC) and dimyristoylphosphatidylcholine (DMPC); all in the fluid phase and under equilibrium conditions at 323K and 298K, respectively. All of our simulations were performed over 100 ns total simulation time and in the absence of any externally applied stress to the membranes. In all three systems investigated, in the presence of DMSO, we observed that small hydrophobic pores start to open across the membranes at various times during the simulations ranging from 10 ns for the DMPC, 45ns for POPC to 50ns for DPPC membrane. By carefully analyzing the membranes structures we concluded that hydrophobic pores open and close continuously during the simulation beyond the above mentioned time marks. Interestingly, as there is no external stress applied to the membranes these hydrophobic pores are presumably nucleated by thermal fluctuations. In all three systems we also observe that after some time after the first hydrophobic pore nucleation the pore starts to grow and transforms into a hydrophilic pore which continue to grow at an even higher rate. Our MD simulation studies of various BLMs indicate that the presence of DMSO may lower the pore edge line tension leading to pore nucleation and growth due to only thermal fluctuations.
机译:我们在这项工作中报告了我们的观察结果,这些观察结果是通过对包含11.3 mol%的二甲基亚砜(DMSO)和三个完全水合的脂质分子双层(BLM)的溶液之间的相互作用进行详细的原子研究得出的。所考虑的BLM为:二棕榈酰磷脂酰胆碱(DPPC),棕榈酰油酰磷脂酰胆碱(POPC)和二肉豆蔻酰磷脂酰胆碱(DMPC);分别处于流体相和平衡条件下(分别为323K和298K)。我们所有的仿真都在总仿真时间超过100 ns的时间内完成,并且没有向膜施加任何外部应力。在所研究的所有三个系统中,在存在DMSO的情况下,我们观察到在模拟过程中,不同时间的小疏水孔开始跨膜开放,范围从DMPC的10 ns,POPC的45 ns到DPPC膜的50 ns。通过仔细分析膜的结构,我们得出结论,在上述时间标记之外,疏水孔在模拟过程中连续打开和关闭。有趣的是,由于没有外力施加到膜上,这些疏水孔可能被热波动核化了。在所有三个系统中,我们还观察到,在第一个疏水性孔成核之后的一段时间后,孔开始生长并转变为亲水性孔,该亲水性孔继续以更高的速率生长。我们对各种BLM的MD模拟研究表明,DMSO的存在可能会降低孔边缘线的张力,从而仅由于热波动而导致孔成核和生长。

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