磁铁
磁场
磁性纳米粒子
机械
微血管
材料科学
粒子(生态学)
纳米颗粒
流体学
半径
纳米技术
计算物理学
物理
核磁共振
航空航天工程
计算机科学
内科学
地质学
工程类
海洋学
医学
量子力学
免疫组织化学
计算机安全
作者
Edward P. Furlani,K. C. Ng
出处
期刊:Physical Review E
[American Physical Society]
日期:2006-06-27
卷期号:73 (6): 061919-061919
被引量:241
标识
DOI:10.1103/physreve.73.061919
摘要
An analytical model is presented for predicting the transport and capture of therapeutic magnetic nanoparticles in the human microvasculature. The nanoparticles, with surface bound drug molecules, are injected into the vascular system upstream from malignant tissue, and are captured at the tumor site using a local applied magnetic field. The applied field is produced by a rare-earth cylindrical magnet positioned outside the body. An analytical expression is derived for predicting the trajectory of a particle as it flows through the microvasculature in proximity to the magnet. In addition, a scaling relation is developed that enables the prediction of the minimum particle radius required for particle capture. The theory takes into account the dominant magnetic and fluidic forces, which depend on the position and properties of the magnet, the size and magnetic properties of the nanoparticles, the dimensions of the microvessel, the hematocrit level of the blood, and the flow velocity. The model is used to study noninvasive drug targeting, and the analysis indicates that submicron particles can be directed to tumors that are several centimeters from the field source.
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