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Computational modelling of drug delivery to solid tumour: Understanding the interplay between chemotherapeutics and biological system for optimised delivery systems

机译:药物递送给实体瘤的计算模型:了解化学治疗剂与生物系统的相互作用,用于优化输送系统

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Drug delivery to solid tumour involves multiple physiological, biochemical and biophysical processes taking place across a wide range of length and time scales. The therapeutic efficacy of anticancer drugs is influenced by the complex interplays among the intrinsic properties of tumours, biophysical aspects of drug transport and cellular uptake. Mathematical and computational modelling allows for a well-controlled study on the individual and combined effects of a wide range of parameters on drug transport and therapeutic efficacy, which would not be possible or economically viable through experimental means. A wide spectrum of mathematical models has been developed for the simulation of drug transport and delivery in solid tumours, including PK/PD-based compartmental models, microscopic and macroscopic transport models, and molecular dynamics drug loading and release models. These models have been used as a tool to identify the limiting factors and for optimal design of efficient drug delivery systems. This article gives an overview of the currently available computational models for drug transport in solid tumours, together with their applications to novel drug delivery systems, such as nano particle-mediated drug delivery and convection-enhanced delivery. (C) 2018 Elsevier B.V. All rights reserved.
机译:固体肿瘤的药物递送涉及多种长度和时间尺度的多种生理学,生物化学和生物物理过程。抗癌药物的治疗疗效受到肿瘤内在特性的复杂相互作用的影响,药物传输和细胞吸收的生物物理方面。数学和计算建模允许对各种参数对药物运输和治疗效果的个体和综合作用进行良好控制的研究,这通过实验手段是不可能的或经济上可行的。已经开发了广泛的数学模型,用于模拟药物运输和固体肿瘤中的递送,包括基于PK / PD的隔间模型,微观和宏观传输模型,以及分子动力学药物载荷和释放模型。这些模型已被用作识别限制因素的工具和用于高效药物递送系统的最佳设计。本文概述了目前可用的药物转运中的药物运输算模型,以及其应用于新型药物递送系统,例如纳米粒子介导的药物递送和对流增强的递送。 (c)2018 Elsevier B.v.保留所有权利。

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