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Synergistic Effect of Binary Mixed-Pluronic Systems on Temperature Dependent Self-assembly Process and Drug Solubility

机译:二元混合流体系统对温度依赖性自组装过程和药物溶解度的协同效应

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摘要

Mixed Pluronic micelles from very hydrophobic and very hydrophilic copolymers were selected to scrutinize the synergistic effect on the self-assembly process as well as the solubilization capacity of ibuprofen. The tendency of mixing behavior between parent copolymers was systematically examined from two perspectives: different block chain lengths at same hydrophilicity (L92 + F108, +F98, +F88, and +F68), as well as various hydrophobicities at the same PPO moiety (L92 + F88, +F87, and +P84). Temperature-dependent micellization in these binary systems was clearly inspected by the combined use of high sensitivity differential scanning calorimeter (HSDSC) and dynamic light scattering (DLS). Changes in heat capacity and size of aggregates at different temperatures during the whole micellization process were simultaneously observed and examined. While distinction of block chain length between parent copolymers increases, the monodispersity of the binary Pluronic systems decreases. However, parent copolymers with distinct PPO moieties do not affirmatively lead to non-cooperative binding, such as the L92 + P84 system. The addition of ibuprofen promotes micellization as well as stabilizes aggregates in the solution. The partial replacement of the hydrophilic Pluronic by a more hydrophobic Pluronic L92 would increase the total hydrophobicity of mixed Pluronics used in the system to substantially enhance the solubility of ibuprofen. The solubility of ibuprofen in the 0.5 wt % L92 + 0.368 wt % P84 system is as high as 4.29 mg/mL, which is 1.4 times more than that of the 0.868 wt % P84 system and 147 times more than that in pure water at 37 °C.
机译:选择了由疏水性和亲水性很强的共聚物组成的混合Pluronic胶束,以考察其对自组装过程的协同作用以及布洛芬的增溶能力。从两个角度系统地研究了母体共聚物之间混合行为的趋势:在相同亲水性下(L92 + F108,+ F98,+ F88和+ F68)的不同嵌段链长度,以及在相同PPO部分(L92)下的各种疏水性+ F88,+ F87和+ P84)。通过结合使用高灵敏度差示扫描量热仪(HSDSC)和动态光散射(DLS),可以清楚地检查这些二元系统中依赖温度的胶束化作用。在整个胶束化过程中,同时观察和检查了在不同温度下热容量和聚集体尺寸的变化。当母体共聚物之间的嵌段链长度的区别增加时,二元Pluronic体系的单分散性降低。但是,具有不同PPO部分的母体共聚物不能肯定地导致非合作结合,例如L92 + P84体系。布洛芬的添加促进胶束化并稳定溶液中的聚集体。用疏水性更强的Pluronic L92部分取代亲水性Pluronic会增加系统中使用的混合Pluronics的总疏水性,从而大幅提高布洛芬的溶解度。布洛芬在0.5 wt%L92 + 0.368 wt%P84体系中的溶解度高达4.29 mg / mL,比0.868 wt%P84体系的溶解度高1.4倍,比纯水在37℃时的溶解度高147倍℃。

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