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首页> 外文期刊>Journal of nanotechnology in engineering and medicine. >Nanocarrier-cell surface adhesive and hydrodynamic interactions: Ligand-receptor bond sensitivity study
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Nanocarrier-cell surface adhesive and hydrodynamic interactions: Ligand-receptor bond sensitivity study

机译:纳米载体-细胞表面粘合剂和流体动力相互作用:配体-受体键敏感性研究

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摘要

A hybrid approach combining fluctuating hydrodynamics with generalized Langevin dynamics is employed to study the motion of a neutrally buoyant nanocarrier in an incompressible Newtonian stationary fluid medium. Both hydrodynamic interactions and adhesive interactions are included, as are different receptor-ligand bond constants relevant to medical applications. A direct numerical simulation adopting an arbitrary Lagrangian-Eulerian based finite element method is employed for the simulation. The flow around the particle and its motion are fully resolved. The temperatures of the particle associated with the various degrees of freedom satisfy the equipartition theorem. The potential of mean force (or free energy density) along a specified reaction coordinate for the harmonic (spring) interactions between the antibody and antigen is evaluated for two different bond constants. The numerical evaluations show excellent comparison with analytical results. This temporal multiscale modeling of hydrodynamic and microscopic interactions mediating nanocarrier motion and adhesion has important implications for designing nanocarriers for vascular targeted drug delivery.
机译:一种将波动的流体动力学与广义朗格文动力学相结合的混合方法被用来研究中性浮力纳米载体在不可压缩的牛顿平稳流体介质中的运动。包括流体动力学相互作用和粘合剂相互作用,以及与医学应用相关的不同受体-配体键常数。直接数值模拟采用基于拉格朗日-欧拉的任意有限元方法进行模拟。粒子周围的流动及其运动已完全解决。与各种自由度相关的粒子温度满足均分定理。针对两个不同的键常数,评估了沿着特定反应坐标的平均力(或自由能密度)沿着抗体和抗原之间的谐波(弹簧)相互作用的潜在力。数值评估显示了与分析结果的出色对比。介导纳米载体运动和粘附的流体动力学和微观相互作用的这种时间多尺度建模对于设计用于血管靶向药物递送的纳米载体具有重要意义。

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