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Novel cationic lipid nanoparticles as an ophthalmic delivery system for multicomponent drugs: development characterization in vitro permeation in vivo pharmacokinetic and molecular dynamics studies

机译:新型阳离子脂质纳米颗粒作为多组分药物的眼科给药系统:开发表征体外渗透体内药代动力学和分子动力学研究

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摘要

The purpose of this study was to prepare, optimize, and characterize a cationic lipid nanoparticle (CLN) system containing multicomponent drugs using a molecular dynamics model as a novel method of evaluating formulations. Puerarin (PUE) and scutellarin (SCU) were used as model drugs. CLNs were successfully prepared using melt-emulsion ultrasonication and low temperature-solidification technique. The properties of CLNs such as morphology, particle size, zeta potential, entrapment efficiency (EE), drug loading (DL), and drug release behavior were investigated. The CLNs were evaluated by corneal permeation, preocular retention time, and pharmacokinetics in the aqueous humor. Additionally, a molecular dynamics model was used to evaluate the formulation. Electron microscopy results showed that the nanoparticles were approximately spherical in shape. The EE (%) and DL (%) values of PUE and SCU in the optimal formulation were 56.60±3.73, 72.31±1.96 and 1.68±0.17, 2.44±1.14, respectively. The pharmacokinetic study in the aqueous humor showed that compared with the PUE and SCU solution, the area under the concentration–time curve (AUC) value of PUE was enhanced by 2.33-fold for PUE-SCU CLNs (p<0.01), and the SCU AUC was enhanced by 2.32-fold (p<0.01). In the molecular dynamics model, PUE and SCU passed through the POPC bilayer, with an obvious difference in the free energy well depth. It was found that the maximum free energy required for PUE and SCU transmembrane movement was ~15 and 88 kJ·mol−1, respectively. These findings indicated that compared with SCU, PUE easily passed through the membrane. The diffusion coefficient for PUE and SCU were 4.1×10−3±0.0027 and 1.0×10−3±0.0006 e−5cm2·s−1, respectively. Data from the molecular dynamics model were consistent with the experimental data. All data indicated that CLNs have a great potential for ocular administration and can be used as an ocular delivery system for multicomponent drugs. Moreover, the molecular dynamics model can also be used as a novel method for evaluating formulations.
机译:这项研究的目的是使用分子动力学模型作为评估配方的新方法,制备,优化和表征包含多组分药物的阳离子脂质纳米颗粒(CLN)系统。葛根素(PUE)和黄cut素(SCU)用作模型药物。 CLNs是使用熔融乳液超声和低温凝固技术成功制备的。研究了CLN的性质,如形态,粒径,ζ电势,包封率(EE),载药量(DL)和药物释放行为。通过在房水中的角膜渗透,眼前保留时间和药代动力学评估CLN。另外,使用分子动力学模型来评估配方。电子显微镜结果表明,该纳米颗粒为近似球形。最佳配方中PUE和SCU的EE(%)和DL(%)值分别为56.60±3.73、72.31±1.96和1.68±0.17、2.44±1.14。在房水中的药代动力学研究表明,与PUE和SCU溶液相比,PUE-SCU CLNs在PUE的浓度-时间曲线(AUC)值下的面积增加了2.33倍(p <0.01),并且SCU AUC增强了2.32倍(p <0.01)。在分子动力学模型中,PUE和SCU穿过POPC双层,其自由能阱深度明显不同。发现PUE和SCU跨膜运动所需的最大自由能分别为〜15和88 kJ·mol -1 。这些发现表明,与SCU相比,PUE容易通过膜。 PUE和SCU的扩散系数分别为4.1×10 -3 ±0.0027和1.0×10 -3 ±0.0006 e -5 cm 2 ·s -1 。来自分子动力学模型的数据与实验数据一致。所有数据表明CLNs具有很大的眼部给药潜力,可用作多组分药物的眼部递送系统。此外,分子动力学模型也可以用作评估配方的新方法。

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