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Investigating the molecular dissolution process of binary solid dispersions by molecular dynamics simulations

机译:通过分子动力学模拟研究二元固体分散体的分子溶解过程

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摘要

Dissolution molecular mechanism of solid dispersions still remains unclear despite thousands of reports about this technique. The aim of current research was to investigate the molecular dissolution mechanism of solid dispersions by molecular dynamics simulations. The formation of ibuprofen/polymer solid dispersions was modeled by the simulated annealing method. After that, the models of solid dispersions were immersed into the water box with 25–30 Å thicknesses and 50–100 ns MD simulations were performed to all systems. Simulation results showed various dissolution behaviors in different particle sizes and various polymers of solid dispersions. Small-sized particles of solid dispersions dissolved quickly in the water, while the large particles of PEG or PVP-containing solid dispersions gradually swelled in the dissolution process and drug molecules may aggregate together. In the dissolution process, the carboxylic groups of ibuprofen molecules turned its direction from polymer molecules to external water box and then the drug molecules left the polymer coils. At the same time, polymer coils gradually relaxed and became free polymer chains in the solution. In addition, solid dispersion with poloxamer could prevent the precipitate of drug molecules in the dissolution process, which is different from those of PEG or PVP-containing systems. This research provided us clear images of dissolution process of solid dispersions at the molecular level.
机译:尽管有成千上万的关于该技术的报道,但固体分散体的溶解分子机理仍然不清楚。当前研究的目的是通过分子动力学模拟研究固体分散体的分子溶解机理。布洛芬/聚合物固体分散体的形成通过模拟退火方法进行建模。之后,将固体分散体模型浸入厚度为25–30Å的水箱中,并对所有系统进行50-100 ns的MD模拟。模拟结果显示了在不同粒径和固体分散体的各种聚合物中的各种溶解行为。固体分散体的小颗粒在水中迅速溶解,而含有PEG或PVP的固体分散体的大颗粒在溶解过程中逐渐溶胀,药物分子可能聚集在一起。在溶解过程中,布洛芬分子的羧基从聚合物分子转向外部水箱,然后药物分子离开聚合物线圈。同时,聚合物线圈逐渐松弛,并在溶液中变成自由的聚合物链。此外,泊洛沙姆的固体分散可防止药物分子在溶解过程中沉淀,这与含PEG或PVP的体系不同。这项研究为我们提供了在分子水平上固体分散体溶解过程的清晰图像。

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