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用于在纳米尺度控制药物突释的嵌段共聚物胶束的合理设计。

Rational design of block copolymer micelles to control burst drug release at a nanoscale dimension.

作者信息

Soleymani Abyaneh Hoda, Vakili Mohammad Reza, Zhang Fanglin, Choi Phillip, Lavasanifar Afsaneh

机构信息

Faculty of Pharmacy and Pharmaceutical Sciences, University of Alberta, Edmonton, Alberta T6G 2E1, Canada.

Department of Chemical and Materials Engineering, University of Alberta, Edmonton, Alberta T6G 2V4, Canada.

出版信息

Acta Biomater. 2015 Sep;24:127-39. doi: 10.1016/j.actbio.2015.06.017. Epub 2015 Jun 17.

Abstract

UNLABELLED

To circumvent the problem of burst drug release from polymeric micelles, we designed three layered ABC micelles consisting of methoxy poly(ethylene oxide) (PEO) as the shell layer (A block); poly(lactic acid) (PLA) of different stereo-chemistries as the outer core (B block) and poly(α-benzylcarboxylate-ε-caprolactone) (PBCL) or poly(ε-caprolactone) (PCL) as the inner core (C block). The micelles were used to encapsulate a model hydrophobic drug, nimodipine. The effect of PLA (B block) incorporation and stereochemistry on the formation of semi crystalline outer cores in ABC triblock copolymer micelles, micelle stability, drug loading and release was then assessed in comparison to diblock copolymer micelles. The PLA outer core was expected to act as a barrier lowering the rate of drug diffusion out of the micellar carrier owing to a high Flory Huggins interaction parameter between nimodipine and PLA (χ=1.35). Introduction of PLA outer cores in ABC block copolymer micelles reduced the burst release of nimodipine from polymeric micelles without jeopardizing its high encapsulation efficiency. In ABC polymeric micelles with stereo-regular PLA blocks; semi-crystalline outer PLA cores were not formed, which was in contrast to PEO-PLA diblock copolymer micelles. Accordingly, PLA stereo-chemistry had no significant effect on drug release in ABC polymeric micelles. In contrast to diblock copolymers, no sign of stereo-complexation in mixed micelles composed of a 50:50 mixture of PdLA and PlLA containing ABC triblock copolymers was observed. The results showed the capability of properly designed ABC triblock copolymer micelles as reservoirs for drug solubilization and depot release at nanoscale dimensions.

STATEMENT OF SIGNIFICANCE

Polymeric micelles are core-shell nanostructures that are widely used for drug delivery. Their hydrophobic core accommodates poor water soluble drugs and their hydrophilic shell allows the whole structure to be water soluble. A common problem with the use of polymeric micelles is leakage of the incorporated drug from these carriers. Here we have shown that a properly designed three layered (ABC) block copolymer micelle with drug compatible blocks at the inner core and drug incompatible blocks at the outer core can be used to reduce the initial fast rate of drug release while providing high amount of drug encapsulated in the core. Moreover, changes in the chemical structure of the inner core may be used to modify the stability of these systems.

摘要

未标记

为了解决聚合物胶束中药物突发释放的问题,我们设计了三层ABC胶束,其由作为壳层(A嵌段)的甲氧基聚(环氧乙烷)(PEO);不同立体化学结构的聚乳酸(PLA)作为外壳层(B嵌段)和聚(α-苄基羧酸酯-ε-己内酯)(PBCL)或聚(ε-己内酯)(PCL)作为内核(C嵌段)组成。这些胶束用于包封一种模型疏水药物尼莫地平。然后,与二嵌段共聚物胶束相比,评估了PLA(B嵌段)的掺入及其立体化学对ABC三嵌段共聚物胶束中半结晶外壳层形成、胶束稳定性、药物负载和释放的影响。由于尼莫地平和PLA之间具有较高的弗洛里-哈金斯相互作用参数(χ=1.35),预计PLA外壳层将作为一道屏障,降低药物从胶束载体中扩散出来的速率。在ABC嵌段共聚物胶束中引入PLA外壳层可减少尼莫地平从聚合物胶束中的突发释放,同时不损害其高包封效率。在具有立构规整PLA嵌段的ABC聚合物胶束中,未形成半结晶的外部PLA核,这与PEO-PLA二嵌段共聚物胶束相反。因此,PLA立体化学对ABC聚合物胶束中的药物释放没有显著影响。与二嵌段共聚物不同,在由含有ABC三嵌段共聚物的PdLA和PlLA 50:50混合物组成的混合胶束中未观察到立体络合迹象。结果表明,经过适当设计的ABC三嵌段共聚物胶束能够在纳米尺度上作为药物增溶和长效释放的储库。

重要性声明

聚合物胶束是核壳纳米结构,广泛用于药物递送。其疏水核容纳水溶性差的药物,其亲水壳使整个结构具有水溶性。使用聚合物胶束的一个常见问题是掺入的药物从这些载体中泄漏。在这里,我们表明,一种经过适当设计的三层(ABC)嵌段共聚物胶束,其内核具有与药物相容的嵌段,外壳层具有与药物不相容的嵌段,可用于降低药物的初始快速释放速率,同时在核中提供大量包封的药物。此外,内核化学结构的变化可用于改变这些系统的稳定性。

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