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具有纳米精度的核壳型聚合物胶束的尺寸控制

Size control of core-shell-type polymeric micelle with a nanometer precision.

作者信息

Makino Akira, Hara Eri, Hara Isao, Ozeki Eiichi, Kimura Shunsaku

机构信息

Biomedical Imaging Research Center, University of Fukui , 23-3 Matsuoka-Shimoaizuki, Eiheiji-cho, Yoshida-gun, Fukui 910-1193, Japan.

出版信息

Langmuir. 2014 Jan 21;30(2):669-74. doi: 10.1021/la404488n. Epub 2014 Jan 8.

Abstract

Amphiphilic polydepsipeptides having a hydrophobic poly(L-lactic acid) block and varying numbers of a hydrophilic poly(sarcosine) block ranging from 1 to 3, AB-, A2B-, and A3B-type, were prepared and studied on their molecular assemblies. The morphologies were found to be polymeric micelles for the AB- and the A3B-type polydepsipeptides, but worm-like micelles for the A2B-type polydepsipeptide. The hydrodynamic diameter of the A3B-type polydepsipeptide (22 nm) became smaller than the AB-type polydepsipeptide (34 nm). The polymeric micelle sizes composed of the AB-type polydepsipeptide were adjustable up to ca. 100 nm with incorporation of poly(L-lactic acid) into the hydrophobic core. On the other hand, with varying mixing ratio of the AB-type and A3B-type polydepsipeptides, the hydrodynamic diameters were tunable to become smaller sizes with a precise control in the range from 22 to 34 nm. The polydispersity indices of the polymeric micelles were less than 0.1, indicating that we can obtain the homogeneous polymeric micelles with diameters in the range from 20 to 100 nm under a precise control.

摘要

制备了具有疏水性聚(L-乳酸)嵌段和数量从1到3不等的亲水性聚(肌氨酸)嵌段的两亲性聚缩肽,包括AB型、A2B型和A3B型,并对其分子组装进行了研究。结果发现,AB型和A3B型聚缩肽的形态为聚合物胶束,而A2B型聚缩肽的形态为蠕虫状胶束。A3B型聚缩肽的流体动力学直径(22nm)比AB型聚缩肽(34nm)小。通过将聚(L-乳酸)掺入疏水核中,由AB型聚缩肽组成的聚合物胶束尺寸可调节至约100nm。另一方面,随着AB型和A3B型聚缩肽混合比例的变化,流体动力学直径可精确控制在22至34nm范围内,从而实现更小尺寸的调节。聚合物胶束的多分散指数小于0.1,表明我们可以在精确控制下获得直径在20至100nm范围内的均匀聚合物胶束。

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