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Rupture of Lipid Membranes Induced by Amphiphilic Janus Nanoparticles

机译:用两亲的Janus纳米粒子诱导的脂质膜破裂

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The surface coatings of nanoparticles determine their interaction with biomembranes, but studies have been limited almost exclusively to nanoparticles with a uniform surface chemistry. Although nanoparticles are increasingly made with complex surface chemistries to achieve multi-functionalities, our understanding of how a heterogeneous surface coating affects particle-biomembrane interaction has been lagging far behind. Here we report an investigation of this question in an experimental system consisting of amphiphilic "two-faced" Janus nanoparticles and supported lipid membranes. We show that amphiphilic Janus nanoparticles at picomolar concentrations induce defects in zwitterionic lipid bilayers. In addition to revealing the various effects of hydrophobicity and charge in particle bilayer interactions, we demonstrate that the Janus geometry-the spatial segregation of hydrophobicity and charges on particle surface causes nanoparticles to bind more strongly to bilayers and induce defects more effectively than particles with uniformly mixed surface functionalities. We combine experiments with computational simulation to further elucidate how amphiphilic Janus nanoparticles extract lipids to rupture intact lipid bilayers. This study provides direct evidence that the spatial arrangement of surface functionalities on a nanoparticle, rather than just its overall surface chemistry, plays a crucial role in determining how it interacts with biological membranes.
机译:纳米粒子的表面涂层确定它们与生物膜的相互作用,但研究几乎仅限于具有均匀表面化学的纳米颗粒。尽管纳米颗粒越来越多地用复杂的表面化学品制成以实现多功能,但我们对多均匀表面涂层的理解如何影响粒子 - 生物膜相互作用已经滞后。在这里,我们在由两亲“双面”Janus纳米粒子组成的实验系统中对该问题的调查进行了调查,该问题组成的Janus纳米粒子和支持的脂质膜。我们展示了双摩洛尔浓度的两亲janus纳米粒子诱导两性离子脂双层的缺陷。除了揭示液体双层相互作用中疏水性和电荷的各种效果之外,我们证明Janus几何形​​状 - 粒子表面的疏水性和电荷的空间偏析导致纳米颗粒对双层粘合更强烈,并且比均匀颗粒更有效地诱导缺陷混合表面功能。我们将实验与计算模拟相结合,以进一步阐明两亲的Janus纳米粒子如何提取脂质以破裂完整的脂质双层。本研究提供了直接证据,即纳米粒子的表面官能团的空间排列,而不是其整体表面化学,在确定其与生物膜的相互作用时起着至关重要的作用。

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