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磁性靶向药物递送中铁磁流体的动力学建模
引用本文:刘菡萏,徐威,王石刚,柯遵纪.磁性靶向药物递送中铁磁流体的动力学建模[J].应用数学和力学(英文版),2008,29(10):1341-1349.
作者姓名:刘菡萏  徐威  王石刚  柯遵纪
基金项目:国家重点基础研究发展计划(973计划),国家自然科学基金
摘    要:Among the proposed techniques for delivering drugs to specific locations within human body, magnetic drug targeting prevails due to its non-invasive character and its high targeting efficiency. Magnetic targeting drug delivery is a method of carrying drug-loaded magnetic nanoparticles to a target tissue target under the applied magnetic field. This method increases the drug concentration in the target while reducing the adverse side-effects. Although there have been some theoretical analyses for magnetic drug targeting, very few researchers have addressed the hydrodynamic models of magnetic fluids in the blood vessel. A mathematical model is presented to describe the hydrodynamics of ferrofiuids as drug carriers flowing in a blood vessel under the applied magnetic field. In this model, magnetic force and asymmetrical force are added, and an angular momentum equation of magnetic nanoparticles in the applied magnetic field is modeled. Engineering approximations are achieved by retaining the physically most significant items in the model due to the mathematical complexity of the motion equations. Numerical simulations are performed to obtain better insight into the theoretical model with computational fluid dynamics. Simulation results demonstrate the important parameters leading to adequate drug delivery to the target site depending on the magnetic field intensity, which coincident with those of animal experiments. Results of the analysis provide important information and suggest strategies for improving delivery in clinical application.

关 键 词:磁性靶向药物递送  铁磁流体  磁性纳米颗粒  动力学建模  CFD仿真  
收稿时间:2007-10-11

Hydrodynamic modeling of ferrofluid flow in magnetic targeting drug delivery
Liu Han-dan,Xu Wei,Wang Shi-gang,Ke Zun-ji.Hydrodynamic modeling of ferrofluid flow in magnetic targeting drug delivery[J].Applied Mathematics and Mechanics(English Edition),2008,29(10):1341-1349.
Authors:Liu Han-dan  Xu Wei  Wang Shi-gang  Ke Zun-ji
Institution:1. School of Mechanical Engineering, Shanghai Jiaotong University,Shanghai 200240, P. R. China; 2. Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences,Shanghai 200031, P. R. China
Abstract:Among the proposed techniques for delivering drugs to specific locations within human body, magnetic drug targeting prevails due to its non-invasive character and its high targeting efficiency. Magnetic targeting drug delivery is a method of carrying drug-loaded magnetic nanoparticles to a target tissue target under the applied magnetic field. This method increases the drug concentration in the target while reducing the adverse side-effects. Although there have been some theoretical analyses for magnetic drug targeting, very few researchers have addressed the hydrodynamic models of magnetic fluids in the blood vessel. A mathematical model is presented to describe the hydrodynamics of ferrofluids as drug carriers flowing in a blood vessel under the applied magnetic field. In this model, magnetic force and asymmetrical force are added, and an angular momentum equation of magnetic nanoparticles in the applied magnetic field is modeled. Engineering approximations are achieved by retaining the physically most significant items in the model due to the mathematical complexity of the motion equations. Numerical simulations are performed to obtain better insight into the theoretical model with computational fluid dynamics. Simulation results demonstrate the important parameters leading to adequate drug delivery to the target site depending on the magnetic field intensity, which coincident with those of animal experiments. Results of the analysis provide important information and suggest strategies for improving delivery in clinical application.
Keywords:magnetic targeting drug delivery  ferrofluids  magnetic nanoparticles  hydrodynamic modeling  CFD simulation
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