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Molecular Simulations of PEGylated Biomolecules Liposomes and Nanoparticles for Drug Delivery Applications

机译:聚乙二醇化生物分子脂质体和纳米颗粒在药物递送应用中的分子模拟

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摘要

Since the first polyethylene glycol (PEG)ylated protein was approved by the FDA in 1990, PEGylation has been successfully applied to develop drug delivery systems through experiments, but these experimental results are not always easy to interpret at the atomic level because of the limited resolution of experimental techniques. To determine the optimal size, structure, and density of PEG for drug delivery, the structure and dynamics of PEGylated drug carriers need to be understood close to the atomic scale, as can be done using molecular dynamics simulations, assuming that these simulations can be validated by successful comparisons to experiments. Starting with the development of all-atom and coarse-grained PEG models in 1990s, PEGylated drug carriers have been widely simulated. In particular, recent advances in computer performance and simulation methodologies have allowed for molecular simulations of large complexes of PEGylated drug carriers interacting with other molecules such as anticancer drugs, plasma proteins, membranes, and receptors, which makes it possible to interpret experimental observations at a nearly atomistic resolution, as well as help in the rational design of drug delivery systems for applications in nanomedicine. Here, simulation studies on the following PEGylated drug topics will be reviewed: proteins and peptides, liposomes, and nanoparticles such as dendrimers and carbon nanotubes.
机译:自1990年FDA批准首个聚乙二醇(PEG)酰化蛋白以来,PEG化已成功地用于通过实验开发药物递送系统,但由于分辨率有限,这些实验结果并不总是易于在原子水平上解释实验技术。为了确定用于药物输送的PEG的最佳尺寸,结构和密度,需要理解PEG化药物载体的结构和动力学接近原子尺度,这可以使用分子动力学模拟来完成,前提是可以验证这些模拟通过与实验的成功比较。从1990年代开发全原子和粗粒度PEG模型开始,已经广泛地模拟了PEG化药物载体。特别是,计算机性能和模拟方法的最新进展已使大型聚乙二醇化药物载体与其他分子(例如抗癌药,血浆蛋白,膜和受体)相互作用的复合物的分子模拟成为可能,从而可以在实验室解释实验观察结果。近乎原子的分辨率,并有助于合理设计用于纳米医学的药物输送系统。在这里,将对以下聚乙二醇化药物主题的模拟研究进行综述:蛋白质和多肽,脂质体和纳米颗粒(例如树状聚合物和碳纳米管)。

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