首页> 外文会议>ASME international mechanical engineering congress and exposition;IMECE2011 >Electrophoretic Mobility of Lipid Coated Nanoparticles: Understanding the Influence of Size and Charge on a Lipoprotein Particle Mimic
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Electrophoretic Mobility of Lipid Coated Nanoparticles: Understanding the Influence of Size and Charge on a Lipoprotein Particle Mimic

机译:脂质包覆的纳米颗粒的电泳迁移率:了解大小和电荷对脂蛋白颗粒模拟物的影响。

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Elevated levels of low-density lipoprotein (LDL) are associated with increased risk of coronary heart disease (CHD). Although smaller LDL particles are more atherogenic, it is not clear how LDL particle size influences atherogenesis. Smaller particles may be more prone to macrophage uptake and plaque formation. Alternatively, increased rates of lipid oxidation may explain the atherogenic effects of smaller LDL. We have developed a mimic of LDL that allows independent examination of the effect of LDL size and oxidation. We have engineered LDL mimics using liposome-encapsulated gold nanoparticles, in which the size and surface charge are independently controlled during synthesis. Here we examine the effects of lipid composition on zeta potential and electrophoretic mobility of LDL mimics. Using these mimics, we explored the effect of the lipid coating on the nanoparticles including anionic lipids and oxidized lipids. Dynamic light scattering was used to determine the size of the mimics and gel electrophoresis was used to measure the mobility and calculate zeta potential. The charge of the lipid coating influenced the mobility and we anticipate this will influence how the mimics interacts with proteins.
机译:低密度脂蛋白(LDL)水平升高与冠心病(CHD)风险增加相关。尽管较小的LDL颗粒具有更强的动脉粥样硬化作用,但尚不清楚LDL粒径如何影响动脉粥样硬化的形成。较小的颗粒可能更易于吸收巨噬细胞和形成斑块。或者,脂质氧化速率的增加可以解释较小的LDL的致动脉粥样硬化作用。我们已经开发了一种LDL模拟物,可以独立检查LDL大小和氧化的影响。我们使用脂质体包裹的金纳米颗粒设计了LDL模拟物,其中大小和表面电荷在合成过程中受到独立控制。在这里,我们检查脂质成分对LDL模拟物的Zeta电位和电泳迁移率的影响。使用这些模拟物,我们探索了脂质涂层对包括阴离子脂质和氧化脂质在内的纳米颗粒的影响。动态光散射用于确定模拟物的大小,凝胶电泳用于测量迁移率并计算ζ电势。脂质涂层的电荷影响了迁移率,我们预计这将影响模拟物与蛋白质的相互作用。

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