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室温离子液体水溶液中POPC双层膜的结构与动力学

Structure and dynamics of POPC bilayers in water solutions of room temperature ionic liquids.

作者信息

Benedetto Antonio, Bingham Richard J, Ballone Pietro

机构信息

School of Physics, University College Dublin, Dublin 4, Ireland.

York Centre for Complex Systems Analysis, University of York, York YO10 5GE, United Kingdom.

出版信息

J Chem Phys. 2015 Mar 28;142(12):124706. doi: 10.1063/1.4915918.

Abstract

Molecular dynamics simulations in the NPT ensemble have been carried out to investigate the effect of two room temperature ionic liquids (RTILs), on stacks of phospholipid bilayers in water. We consider RTIL compounds consisting of chloride ([bmim][Cl]) and hexafluorophosphate ([bmim][PF6]) salts of the 1-buthyl-3-methylimidazolium (bmim) cation, while the phospholipid bilayer is made of 1-palmitoyl-2-oleoyl-sn-glycero-3-phosphocholine (POPC). Our investigations focus on structural and dynamical properties of phospholipid and water molecules that could be probed by inelastic and quasi-elastic neutron scattering measurements. The results confirm the fast incorporation of bmim into the lipid phase already observed in previous simulations, driven by the Coulomb attraction of the cation for the most electronegative oxygens in the POPC head group and by sizeable dispersion forces binding the neutral hydrocarbon tails of bmim and of POPC. The bmim absorption into the bilayer favours the penetration of water into POPC, causes a slight but systematic thinning of the bilayer, and further stabilises hydrogen bonds at the lipid/water interface that already in pure samples (no RTIL) display a lifetime much longer than in bulk water. On the other hand, the effect of RTILs on the diffusion constant of POPC (DPOPC) does not reveal a clearly identifiable trend, since DPOPC increases upon addition of [bmim][Cl] and decreases in the [bmim][PF6] case. Moreover, because of screening, the electrostatic signature of each bilayer is only moderately affected by the addition of RTIL ions in solution. The analysis of long wavelength fluctuations of the bilayers shows that RTIL sorption causes a general decrease of the lipid/water interfacial tension and bending rigidity, pointing to the destabilizing effect of RTILs on lipid bilayers.

摘要

在NPT系综中进行了分子动力学模拟,以研究两种室温离子液体(RTILs)对水中磷脂双层堆叠的影响。我们考虑由1-丁基-3-甲基咪唑鎓(bmim)阳离子的氯化物([bmim][Cl])和六氟磷酸盐([bmim][PF6])盐组成的RTIL化合物,而磷脂双层由1-棕榈酰-2-油酰基-sn-甘油-3-磷酸胆碱(POPC)构成。我们的研究集中在磷脂和水分子的结构与动力学性质上,这些性质可以通过非弹性和准弹性中子散射测量来探测。结果证实了bmim已如先前模拟中所观察到的那样快速融入脂质相,这是由阳离子对POPC头部基团中电负性最强的氧原子的库仑吸引力以及结合bmim和POPC中性烃尾的可观色散力驱动的。bmim吸收到双层中有利于水渗透到POPC中,导致双层轻微但系统性地变薄,并进一步稳定脂质/水界面处的氢键,在纯样品(无RTIL)中,该界面处的氢键寿命就已比 bulk 水中长得多。另一方面,RTILs对POPC扩散常数(DPOPC)的影响并未显示出明显可识别的趋势,因为添加[bmim][Cl]时DPOPC增加,而在[bmim][PF6]的情况下DPOPC减小。此外,由于屏蔽作用,溶液中添加RTIL离子只会适度影响每个双层的静电特征。对双层长波长涨落的分析表明,RTIL吸附导致脂质/水界面张力和弯曲刚度普遍降低,这表明RTILs对脂质双层具有去稳定作用。

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