Molecular understanding of interactions, structure, and drug encapsulation efficiency of Pluronic micelles from dissipative particle dynamics simulations

被引:0
作者
Gokhan Kacar
机构
[1] Trakya University,Department of Genetics and Bioengineering, Faculty of Engineering
来源
Colloid and Polymer Science | 2019年 / 297卷
关键词
Dissipative particle dynamics; Polymeric micelles; Drug encapsulation; Pluronic-ibuprofen interactions;
D O I
暂无
中图分类号
学科分类号
摘要
In this work, we employ coarse-grained dissipative particle dynamics simulations with the hydrogen bonds added explicitly to study the drug encapsulation property, structure, and interactions of Pluronic L64/ibuprofen combinations. The coarse-grained simulations reveal that the computed total drug encapsulation efficiency is around 80% and the simulations show a decrease in the micelle size upon encapsulation of the drug in line with the experimental literature. The computed radial distribution functions point out that the micelle shrinkage can be caused by an increased local packing of the hydrophobic–hydrophilic units around each other, and the absence of water molecules inside the micelles when there are drug molecules present in the system. Overall, the coarse-grained DPD simulations predict the structural and drug encapsulation properties of a polymeric system consistent with the experiments, whereby bringing new insights to its molecular understanding in terms of micelle shrinkage upon inclusion of ibuprofen.
引用
收藏
页码:1037 / 1051
页数:14
相关论文
共 259 条
  • [31] Batrakova EV(2010)Morphology prediction of block copolymers for drug delivery by mesoscale simulations J Mater Chem 20 7742-13697
  • [32] Alakhov VY(2016)Application of DPD in the design of polymeric nano-micelles as drug carriers J Mol Graph Model 66 1-4435
  • [33] de Oliveira EG(2013)Dissipative particle dynamics studies of doxorubicin-loaded micelles assembled from four-arm star triblock polymers 4AS-PCL-b-PDEAEMA-b-PPEGMA and their pH-release mechanism J Phys Chem B 117 13688-1552
  • [34] Machado PRL(2014)Dissipative particle dynamics simulation on drug loading/release in polyester(-PEG) dendrimer J Nanopart Res 16 2403-11385
  • [35] Farias KJS(1997)Dissipative particle dynamics: bridging the gap between atomistic and mesoscopic simulation J Chem Phys 107 4423-5793
  • [36] da Costa TR(2018)Dissipative particle dynamics simulations of tri-block co-polymer and water: phase diagram validation and microstructure identification J Chem Phys 149 184903-19047
  • [37] Melo DMA(2001)Mesoscale modelling Mol Simul 26 51-8944
  • [38] Lacerda AF(2007)Dissipative particle dynamics simulation of gold nanoparticles stabilization by PEO-PPO-PEO block copolymer micelles Colloid Polym Sci 285 1543-6766
  • [39] Fernandes-Pedrosa MD(2016)Mesoscopic simulations of adsorption and association of PEO-PPO-PEO triblock copolymers on a hydrophobic surface: from mushroom hemisphere to rectangle brush Langmuir 32 11375-10
  • [40] Cornelio AM(2013)A generalized method for parameterization of dissipative particle dynamics for variable bead volumes Epl-Europhys Lett 102 40009-4356