Interaction of antitumoral drug erlotinib with biodegradable triblock copolymers: a molecular modeling study

被引:0
|
作者
Dominik Hlaváč
Diana Klushina
Jonáš Tokarský
机构
[1] VŠB – Technical University of Ostrava,Nanotechnology Centre
[2] VŠB – Technical University of Ostrava,Faculty of Metallurgy and Materials Engineering
[3] VŠB – Technical University of Ostrava,IT4Innovations
来源
Chemical Papers | 2018年 / 72卷
关键词
Molecular dynamics; Miscibility; Erlotinib; Poly-ε-caprolactone; Polyethylene glycol; Polyglycolic acid;
D O I
暂无
中图分类号
学科分类号
摘要
Combination of molecular dynamics simulations and miscibility calculations was used to investigate erlotinib drug delivery systems based on poly-ε-caprolactone–polyethylene glycol–poly-ε-caprolactone (PCL–PEG–PCL) and poly-ε-caprolactone–polyglycolic acid–poly-ε-caprolactone (PCL–PGA–PCL) biodegradable copolymers. The molecular modeling strategy involving visual observation of models, concentration profile analysis, Flory–Huggins χ parameter, cohesive energy density, and mean square displacement calculations reproduced experimental evidence of erlotinib release from PCL–PEG–PCL matrix successfully. Increasing portion of PCL in PCL–PEG–PCL copolymer led to dissolution of erlotinib aggregates recorded in visual and concentration profile analyses. Higher portion of PCL led to higher cohesive energy density and lower mean square displacement values. Success of this strategy in reproduction of experimental data made an opportunity to utilize the same modeling design in prediction of erlotinib release from similar but not yet experimentally tested PCL–PGA–PCL matrix. In this case, agglomeration of erlotinib molecules and stronger cohesive energy density values were observed.
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页码:2023 / 2034
页数:11
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