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Deformation and poration of giant unilamellar vesicles induced by anionic nanoparticles

机译:阴离子纳米粒子诱导的巨型Unilamellar囊泡的变形与成分

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The interaction of anionic magnetite nanoparticles (MNPs) of size 18 nm with negatively charged giant unilamellar vesicles (GUVs) formed from a mixture of neutral dioleoylphosphatidylcholine (DOPC) and negatively charged dioleoylphosphatidylglycerol (DOPG) lipids has been investigated. It has been obtained that NPs induces the deformation of spherical GUVs. The reaction of other GUVs on NPs consists in the appearance of pores in their membranes. We focused the effect of electrostatics on the interaction of charged membranes with MNPs. To study the influence of the surface charge of GUVs on the processes under consideration, we varied the fraction of DOPG in the vesicles from 0 to 100%. We examined the influence of salt concentration in the range of 50 - 300 mM NaCl concentration. To describe the degree of deformation, a special parameter compactness was introduced. The pore formation in the membranes of GUVs was investigated by the leakage of sucrose. The compactness increases with time and also NPs concentration. The fraction of deformed GUVs increases with the increase of surface charge density of membranes as well as the decrease of salt concentration in buffer. The value of compactness for neutral membrane is 1.25 times higher than that of charged ones. The fraction of deformed GUVs become constant after 20 min, however it increases with NPs concentration. The time taken for stochastic pore formation is less for charged membrane than neutral one. The physical mechanism explaining the experimental results obtained in these investigations.
机译:已经研究了由中性二酰基磷脂磷苷(DOPC)和带负电二酰二酰基磷脂酰基(DOPG)脂质的混合物形成的大小18nm的阴离子磁铁矿纳米颗粒(MNP)与带负电荷的巨大Unilamellar囊泡(GUV)的相互作用。已经获得了NPS引起球形GUV的变形。其他GUV对NPS的反应包括在其膜中的孔隙外观。我们将静电物质的效果聚焦对带状膜与MNPS的相互作用。为了研究Guvs表面电荷对所考虑的过程的影响,我们在0至100%的囊泡中变化了DOPG的级分。我们检查了盐浓度在50-300mm NaCl浓度范围内的影响。为了描述变形程度,引入了特殊的参数紧凑性。通过蔗糖泄漏研究了GUV膜中的孔形成。紧凑性随时间和NPS浓度增加。随着膜的表面电荷密度的增加以及缓冲液中的盐浓度降低,变形的GUV的级分增加。中性膜的紧凑性的值比收费的高1.25倍。 20分钟后,变形的GUV的级分变为恒定,但随着NPS浓度增加。对于带电膜的随机孔形成所需的时间比中性为1。解释这些研究中获得的实验结果的物理机制。

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