首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >Flow and adhesion of drug carriers in blood vessels depend on their shape: A study using model synthetic microvascular networks
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Flow and adhesion of drug carriers in blood vessels depend on their shape: A study using model synthetic microvascular networks

机译:药物载体在血管中的流动和粘附取决于其形状:使用模型合成的微血管网络进行的研究

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摘要

Development of novel carriers and optimization of their design parameters has led to significant advances in the field of targeted drug delivery. Since carrier shape has recently been recognized as an important design parameter for drug delivery, we sought to investigate how carrier shape influences their flow in the vasculature and their ability to target the diseased site. Idealized synthetic microvascular networks (SMNs) were used for this purpose since they closely mimic key physical aspects of real vasculature and at the same time offer practical advantages in terms of ease of use and direct observation of particle flow. The attachment propensities of surface functionalized spheres, elliptical/circular disks and rods with dimensions ranging from 1. μm to 20. μm were compared by flowing them through bifurcating SMNs. Particles of different geometries exhibited remarkably different adhesion propensities. Moreover, introduction of a bifurcation as opposed to the commonly used linear channel resulted in significantly different flow and adhesion behaviors, which may have important implications in correlating these results to in vivo behavior. This study provides valuable information for design of carriers for targeted drug delivery.
机译:新型载体的开发及其设计参数的优化已导致靶向药物递送领域的重大进步。由于最近已认识到载体形状是药物递送的重要设计参数,因此我们试图研究载体形状如何影响其在脉管系统中的流动以及其靶向病变部位的能力。理想的合成微血管网络(SMN)用于此目的,因为它们紧密模拟了真实脉管系统的关键物理方面,同时在易于使用和直接观察颗粒流方面提供了实用优势。通过使它们流过分叉的SMN,比较了表面功能化的球体,椭圆/圆盘和尺寸为1.μm至20μm的棒的附着倾向。不同几何形状的颗粒表现出明显不同的粘附倾向。而且,与通常使用的线性通道相反,引入分叉导致明显不同的流动和粘附行为,这可能在将这些结果与体内行为相关联方面具有重要意义。这项研究为设计靶向药物的载体提供了有价值的信息。

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