The Group of Biomaterials and Nanotechnology for Improved Medicines (BIONIMED), Department of Pharmaceutical Technology, Faculty of Pharmacy and Biochemistry, University of Buenos Aires, Argentina.
Nanomedicine. 2011 Oct;7(5):624-37. doi: 10.1016/j.nano.2011.01.017. Epub 2011 Mar 1.
This study investigated the synergistic performance of mixed polymeric micelles made of linear and branched poly(ethylene oxide)-poly(propylene oxide) for the more effective encapsulation of the anti-HIV drug efavirenz. The co-micellization process of 10% binary systems combining different weight ratios of a highly hydrophilic poloxamer (Pluronic F127) and a more hydrophobic poloxamine counterpart (Tetronic T304 and T904) was investigated by means of dynamic light scattering, cloud point and electronic spin resonance experiments. Then, the synergistic solubilization capacity of the micelles was shown. Findings revealed a sharp solubility increase from 4 μg/ml up to more than 33 mg/ml, representing a 8430-fold increase. Moreover, the drug-loaded mixed micelles displayed increased physical stability over time in comparison with pure poloxamine ones. Overall findings confirmed the enormous versatility of the poloxamer/poloxamine systems as Trojan nanocarriers for drug encapsulation and release by the oral route and they entail a relevant enhancement of the previous art towards a more compliant pediatric HIV pharmacotherapy.
本研究调查了由线性和支化聚(氧化乙烯)-聚(氧化丙烯)组成的混合聚合物胶束的协同性能,以更有效地包封抗 HIV 药物依非韦伦。通过动态光散射、浊点和电子自旋共振实验研究了 10%的二元系统中不同重量比的高度亲水性泊洛沙姆(泊洛沙姆 F127)和更疏水性的泊洛胺对应物(Tetronic T304 和 T904)的共胶束化过程。然后,展示了胶束的协同增溶能力。结果表明,溶解度从 4μg/ml 急剧增加到 33mg/ml 以上,增加了 8430 倍。此外,与纯泊洛胺相比,载药混合胶束在一段时间内显示出更高的物理稳定性。总体研究结果证实了泊洛沙姆/泊洛胺系统作为口服给药的药物包封和释放的特洛伊纳米载体的巨大多功能性,它们对以前的艺术进行了重要的增强,以实现更符合儿科 HIV 治疗的依从性。