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红细胞弹丸流捕获微血管中的微粒。

Capture of microparticles by bolus flow of red blood cells in capillaries.

机构信息

Institute for Frontier Life and Medical Sciences, Kyoto University, Department of Biosystems Science, 53 Shogoin-Kawara-cho, Sakyo, Kyoto, 606-8507, Japan.

School of Engineering, Tohoku University, 6-6-01 Aoba, Aoba, Sendai, 980-8579, Japan.

出版信息

Sci Rep. 2017 Jul 14;7(1):5381. doi: 10.1038/s41598-017-05924-7.

Abstract

Previous studies have concluded that microparticles (MPs) can more effectively approach the microvessel wall than nanoparticles because of margination. In this study, however, we show that MPs are not marginated in capillaries where the vessel diameter is comparable to that of red blood cells (RBCs). We numerically investigated the behavior of MPs with a diameter of 1 μm in various microvessel sizes, including capillaries. In capillaries, the flow mode of RBCs shifted from multi-file flow to bolus (single-file) flow, and MPs were captured by the bolus flow of the RBCs instead of being marginated. Once MPs were captured, they rarely escaped from the vortex-like flow structures between RBCs. These capture events were enhanced when the hematocrit was decreased, and reduced when the shear rate was increased. Our results suggest that microparticles may be rather inefficient drug carriers when targeting capillaries because of capture events, but nanoparticles, which are more randomly distributed in capillaries, may be more effective carriers.

摘要

先前的研究得出结论,由于靠边,微粒子(MPs)比纳米粒子更有效地接近微血管壁。然而,在这项研究中,我们表明 MPs 在血管直径与红细胞(RBCs)相当的毛细血管中不会靠边。我们通过数值模拟研究了直径为 1 微米的 MPs 在各种微血管尺寸(包括毛细血管)中的行为。在毛细血管中,RBCs 的流动模式从多列流转变为栓子(单列)流,而 MPs 被 RBCs 的栓子流捕获,而不是靠边。一旦 MPs 被捕获,它们很少从 RBCs 之间的漩涡状流结构中逃脱。当血细胞比容降低时,这些捕获事件会增强,而当剪切率增加时,这些捕获事件会减少。我们的结果表明,由于捕获事件,微粒子作为靶向毛细血管的药物载体效率可能较低,但在毛细血管中分布更随机的纳米粒子可能是更有效的载体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4aec/5511268/5d03a3fd1fd9/41598_2017_5924_Fig1_HTML.jpg

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