首页> 外文期刊>Journal of magnetism and magnetic materials >Implant-assisted magnetic drug targeting in permeable microvessels: Comparison of two-fluid statistical transport model with experiment
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Implant-assisted magnetic drug targeting in permeable microvessels: Comparison of two-fluid statistical transport model with experiment

机译:渗透性微血管中的植入物辅助磁性药物靶向:双流体统计转运模型与实验的比较

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摘要

In experiments and theoretical analyses, this study examines the capture efficiency (CE) of magnetic drug carrier particles (MDCPs) for implant-assisted magnetic drug targeting (IA-MDT) in microvessels. It also proposes a three-dimensional statistical transport model of MDCPs for IA-MDT in permeable microvessels, which describes blood flow by the two-fluid (Casson and Newtonian) model. The model accounts for the permeable effect of the microvessel wall and the coupling effect between the blood flow and tissue fluid flow. The MDCPs move randomly through the microvessel, and their transport state is described by the Boltzmann equation. The regulated changes and factors affecting the CE of the MDCPs in the assisted magnetic targeting were obtained by solving the theoretical model and by experimental testing. The CE was negatively correlated with the blood flow velocity, and positively correlated with the external magnetic field intensity and microvessel permeability. The predicted CEs of the MDCPs were consistent with the experimental results. Additionally, under the same external magnetic field, the predicted CE was 5-8% higher in the IA-MDT model than in the model ignoring the permeability effect of the microvessel wall.
机译:在实验和理论分析中,本研究检查了磁性药物载体颗粒(MDCP)在微血管中进行植入物辅助磁性药物靶向(IA-MDT)的捕获效率(CE)。还提出了用于IA-MDT的MDCP在可渗透微血管中的三维统计运输模型,该模型通过两流体(Casson和Newtonian)模型描述了血流。该模型考虑了微血管壁的渗透作用以及血流和组织液流之间的耦合作用。 MDCP通过微血管随机移动,其转运状态由玻耳兹曼方程描述。通过求解理论模型并通过实验测试,获得了在辅助磁靶向中MDCP的CE的调节变化和影响因素。 CE与血流速度呈负相关,与外部磁场强度和微血管通透性呈正相关。 MDCP的预测CE与实验结果一致。此外,在相同的外部磁场下,IA-MDT模型中的预测CE比忽略微血管壁渗透性效应的模型高出5-8%。

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