基于多尺度物理的纳米载体辅助血管内给药硅学建模

Nicolae-Viorel Buchete, Iwona Cicha, Sutapa Dutta, Panagiotis Neofytou
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引用次数: 0

摘要

在硅学建模工具的支持下合理设计药物纳米载体,可以提高基于纳米系统的血管内给药 (IVDD) 的疗效。计算模型的开发源于用先进模拟取代传统(预)临床试验的愿景,并适用于开发更高效的血管内疗法纳米载体。为建立临床前试验的硅学标准化框架,有必要纳入硅学工具,这些工具可以为各自纳米载体系统的临床前试验的每个实验阶段建模,并给出准确、可验证的结果。本文重点介绍了纳米载体支持血管内给药的现状,并讨论了基于物理学的多尺度建模框架的建模阶段,该框架应得到开发、验证和利用,以满足对用于 IVDD 的纳米载体进行有效临床前评估的需要。
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Multiscale physics-based in silico modelling of nanocarrier-assisted intravascular drug delivery
A rational design of drug nanocarriers supported by in silico modelling tools can improve the efficacy of nanosystem-based intravascular drug delivery (IVDD). Computational model development stems from the vision of replacing conventional (pre)clinical trials with advanced simulations and applies to the development of more efficient nanocarriers for intravascular therapies. To establish a standardized framework for in silico preclinical trials, it is necessary to include in silico tools that can model each experimental stage of a preclinical trial for a respective nanocarrier system and give accurate and verifiable results. This review paper highlights the status of intravascular drug delivery supported by nanocarriers and discusses the modelling stages of a physics-based multiscale modelling framework that should be developed, validated and exploited to address the need for an effective preclinical assessment of nanocarriers for IVDD.
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