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Quantitative Structure-Property Relationship (QSPR) Modeling of Drug-Loaded Polymeric Micelles via Genetic Function Approximation

机译:通过遗传函数逼近对载药聚合物胶束的定量构效关系(QSPR)建模

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摘要

Self-assembled nano-micelles of amphiphilic polymers represent a novel anticancer drug delivery system. However, their full clinical utilization remains challenging because the quantitative structure-property relationship (QSPR) between the polymer structure and the efficacy of micelles as a drug carrier is poorly understood. Here, we developed a series of QSPR models to account for the drug loading capacity of polymeric micelles using the genetic function approximation (GFA) algorithm. These models were further evaluated by internal and external validation and a Y-randomization test in terms of stability and generalization, yielding an optimization model that is applicable to an expanded materials regime. As confirmed by experimental data, the relationship between microstructure and drug loading capacity can be well-simulated, suggesting that our models are readily applicable to the quantitative evaluation of the drug-loading capacity of polymeric micelles. Our work may offer a pathway to the design of formulation experiments.
机译:两性聚合物的自组装纳米胶束代表了一种新型的抗癌药物递送系统。然而,由于对聚合物结构与胶束作为药物载体的功效之间的定量结构-性质关系(QSPR)知之甚少,因此它们的全面临床利用仍具有挑战性。在这里,我们开发了一系列QSPR模型,以使用遗传函数逼近(GFA)算法说明聚合物胶束的载药量。通过内部和外部验证以及Y随机化测试对这些模型进行了进一步的评估,以进行稳定性和泛化分析,得出了适用于扩展材料方案的优化模型。如实验数据所证实,可以很好地模拟微观结构与载药量之间的关系,这表明我们的模型可轻松用于定量评估聚合物胶束的载药量。我们的工作可能会为配方实验的设计提供一条途径。

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