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Nanoparticle mechanics: deformation detection via nanopore resistive pulse sensing

机译:纳米力学变形检测通过纳米孔电阻脉冲传感

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Solid-state nanopores have been widely used in the past for single-particle analysis of nanoparticles, liposomes, exosomes and viruses. The shape of soft particles, particularly liposomes with a bilayer membrane, can greatly differ inside the nanopore compared to bulk solution as the electric field inside the nanopores can cause liposome electrodeformation. Such deformations can compromise size measurement and characterization of particles, but are often neglected in nanopore resistive pulse sensing. In this paper, we investigated the deformation of various liposomes inside nanopores. We observed a significant difference in resistive pulse characteristics between soft liposomes and rigid polystyrene nanoparticles especially at higher applied voltages. We used theoretical simulations to demonstrate that the difference can be explained by shape deformation of liposomes as they translocate through the nanopores. Comparing our results with the findings from electrodeformation experiments, we demonstrated that the rigidity of liposomes can be qualitatively compared using resistive pulse characteristics. This application of nanopores can provide new opportunities to study the mechanics at the nanoscale, to investigate properties of great value in fundamental biophysics and cellular mechanobiology, such as virus deformability and fusogenicity, and in applied sciences for designing novel drug/gene delivery systems.
机译:已经广泛应用于固态纳米孔过去的单粒子分析纳米粒、脂质体、液和病毒。软粒子的形状,特别是脂质体双层膜,可以极大地不同纳米孔内散装解决方案内的电场纳米孔会造成脂质体electrodeformation。这种变形可以妥协的尺寸测量和表征的粒子,但往往忽视了在纳米孔电阻脉冲感应。这篇文章中,我们调查的变形不同脂质体纳米孔内。显著差异在电阻的脉搏软脂质体与刚性特征聚苯乙烯纳米粒子特别是在更高应用电压。证明的区别解释为脂质体的变形形状他们把穿过纳米孔。我们的研究结果与发现electrodeformation实验中,我们证明了脂质体的刚度使用电阻脉冲定性比较特征。可以为研究提供新的机遇力学在纳米尺度上,进行调查在基本属性的价值生物物理学和细胞力学生物学,例如病毒可变形性和fusogenicity,设计新颖的药物/基因的应用科学交付系统。

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