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Convection-Enhanced Intratumoral Nanoparticle Drug Delivery Modeling

机译:对流增强的肿瘤内纳米粒子药物递送建模

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Convection-enhanced intratumoral drug delivery has received increased attention for solid cancer therapy. With CED delivery, the advantages of the use of lipid nanoparticles carrier have been shown in many experimental cancer therapy studies. Thus, the measurement of efficiency of intratumoral nanoparticles CED becomes more and more important. Herein, an improved mathematical modeling method using modified Navier-Stokes equations to simulate nanoparticle CED delivery has been formulated. We separately modeled the delivery procedure of fluid medium (generally water) and nanoparticles. Based on mass conservation equation and Navier-Stokes equations, we constructed the model of the water medium flowing in porous tumor tissue, and then used the convection equations to describe the nanoparticle delivery procedure. Using our intratumoral nanoparticle CED model, we analyzed the effects of the links between the nanoparticle drug delivery distribution and some dominating factors. This work is helpful for predicting the drug distribution in tumor and opens up new opportunities for using computer science to help clinical tumor treatment plan.
机译:对流增强的肿瘤内药物递送受到浓度癌症治疗的增加。随着CED递送,已经在许多实验癌症治疗研究中显示了使用脂质纳米粒子载体的优点。因此,纳米型纳米颗粒的效率测量变得越来越重要。这里,制定了使用改进的Navier-Stokes方程来模拟纳米粒子CED递送的改进的数学建模方法。我们单独建模流体介质(通常水)和纳米颗粒的递送程序。基于大规模保护方程和Navier-Stokes方程,我们构建了流动在多孔肿瘤组织中的水介质的模型,然后使用对流方程来描述纳米颗粒递送程序。使用我们的肿瘤内纳米粒子CED模型,我们分析了纳米粒子药物递送分布与一些主导因子之间的联系的影响。这项工作有助于预测肿瘤中的药物分布,并开辟了利用计算机科学帮助临床肿瘤治疗计划的新机会。

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