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Molecular simulations for amorphous drug formulation: Polymeric matrix properties relevant to hot-melt extrusion

机译:无定形药物制剂的分子模拟:与热熔挤出相关的聚合物基质性质

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摘要

In the present study molecular modelling was used to evaluate polymeric drug carrier matrix properties suitable for hot-melt extrusion (HME). Specifically, the effect of three commonly used plasticizers, namely, citric acid (CA), triethyl citrate (TEC) and polyethylene glycol (PEG), on Soluplus((R)) (polyvinyl caprolactam-polyvinyl acetate-polyethylene glycol graft copolymer, SOL) properties were evaluated with the aid of classical molecular dynamics (MD) and docking simulations. Differential scanning calorimetry (DSC) and ATR-FTIR spectroscopy of polymer-plasticizer mixtures were used to experimentally verify the in silico predictions. Computed Tg value by MD simulations for SOL was in reasonable agreement with the experimentally determined Tg value (72.0 vs. 69.4 degrees C, for MD and DSC measurement, respectively). Solubility parameter calculations with the aid of MD simulations along with calculated molecular lipophilicity potential interaction (MLPI) scores based on molecular docking, suggested component miscibility only in the case of SOL and PEG. This was verified by a positive deviation of the Tg values determined by DSC, compared to the Gordon-Taylor theoretical predictions. Additionally, the calculated MLPI scores suggested strong interactions between SOL and PEG, verified also by ATR-FTIR. Finally, MD simulations of the hydration process suggested strong hydrogen bonding between SOL CA, and CA -water molecules.
机译:在本研究中,使用分子建模来评估适用于热熔挤出(HME)的聚合物药物载体基质特性。具体地,三种常用增塑剂,即柠檬酸(Ca),三乙基柠檬酸酯(TEC)和聚乙二醇(PEG)的效果,对Soluplus((R))(聚乙烯醇己内酰胺 - 聚乙酸乙烯酯 - 聚乙酸 - 聚乙二醇接枝共聚物,溶胶)通过经典分子动力学(MD)和对接模拟来评估性质。差分扫描量热法(DSC)和ATR-FTIR光谱分子的聚合物 - 增塑剂混合物用于实验验证Silico预测。通过MD模拟的计算机TG值与通过实验确定的TG值(72.0与69.4摄氏度,分别用于MD和DSC测量)合理的协议。溶解度参数计算借助于MD模拟以及基于分子对接的计算分子亲脂性潜在相互作用(MLPI)分数,仅在溶胶和佩格的情况下仅提出的组分混溶性。与DSC确定的TG值的正偏差相比,与戈登 - 泰勒理论预测相比,这是通过DSC确定的正偏差来验证。另外,计算的MLPI评分表明Sol和PEG之间的强相互作用,也通过ATR-FTIR验证。最后,MD模拟水合过程的模拟表明溶胶Ca和Ca-Water分子之间的强氢键。

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