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Dynamic Flow Impacts Cell-Particle Interactions: Sedimentation and Particle Shape Effects

机译:动态流动影响细胞与颗粒的相互作用:沉降和颗粒形状效应

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摘要

The interaction of engineered particles with biological systems determines their performance in biomedical applications. Although standard static cell cultures remain the norm for in vitro studies, modern models mimicking aspects of the dynamic in vivo environment have been developed. Herein, we investigate fundamental cell-particle interactions under dynamic flow conditions using a simple and self-contained device together with standard multiwell cell culture plates. We engineer two particle systems and evaluate their cell interactions under dynamic flow, and we compare the results to standard static cell cultures. We find substantial differences between static and dynamic flow conditions and attribute these to particle shape and sedimentation effects. These results demonstrate how standard static assays can be complemented by dynamic flow assays for a more comprehensive understanding of fundamental cell-particle interactions.
机译:工程粒子与生物系统的相互作用决定了它们在生物医学应用中的性能。尽管标准的静态细胞培养仍然是体外研究的规范,但已开发出模仿动态体内环境方面的现代模型。本文中,我们使用简单且自包含的设备以及标准多孔细胞培养板,研究了动态流动条件下基本的细胞-颗粒相互作用。我们设计了两个粒子系统,并评估了它们在动态流动下的细胞相互作用,并将结果与​​标准静态细胞培养进行了比较。我们发现静态和动态流动条件之间存在实质性差异,并将这些差异归因于颗粒形状和沉降效果。这些结果证明了如何通过动态流分析对标准静态分析进行补充,以更全面地了解基本的细胞-颗粒相互作用。

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