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基于疏水性和亲水性普朗尼克嵌段共聚物混合物的用于药物递送的胶束制剂。

Micellar formulations for drug delivery based on mixtures of hydrophobic and hydrophilic Pluronic block copolymers.

作者信息

Oh Kyung T, Bronich Tatiana K, Kabanov Alexander V

机构信息

Department of Pharmaceutical Science, College of Pharmacy, 986025 University of Nebraska Medical Center, Omaha, NE 68198-6025, USA.

出版信息

J Control Release. 2004 Feb 10;94(2-3):411-22. doi: 10.1016/j.jconrel.2003.10.018.

Abstract

Micelles formed by Pluronic block copolymers (PBC) have been studied in multiple applications as drug delivery systems. Hydrophobic PBC form lamellar aggregates with a higher solubilization capacity than spherical micelles formed by hydrophilic PBC. However, they also have a larger size and low stability. To overcome these limitations, binary mixtures from hydrophobic PBC (L121, L101, L81, and L61) and hydrophilic PBC (F127, P105, F87, P85, and F68) were prepared. In most cases, PBC mixtures were not stable, revealing formation of large aggregates and phase separation within 1-2 day(s). However, stable aqueous dispersions of the particles were obtained upon (1). sonication of the PBC mixtures for 1 or 2 min or (2). heating at 70 degrees C for 30 min. Among all combinations, L121/F127 mixtures (1:1% weight ratio) formed stable dispersions with a small particle size. The solubilizing capacity of this system was examined using a model water-insoluble dye, Sudan (III). Mixed L121/F127 aggregates exhibited approximately 10-fold higher solubilization capacity compared to that of F127 micelles. In conclusion, stable aqueous dispersions of nanoscale size were prepared from mixtures of hydrophobic and hydrophilic PBC by using the external input of energy. The prepared mixed aggregates can efficiently incorporate hydrophobic compounds.

摘要

由普朗尼克嵌段共聚物(PBC)形成的胶束作为药物递送系统已在多种应用中得到研究。疏水性PBC形成的层状聚集体比亲水性PBC形成的球形胶束具有更高的增溶能力。然而,它们也具有更大的尺寸和较低的稳定性。为了克服这些限制,制备了疏水性PBC(L121、L101、L81和L61)和亲水性PBC(F127、P105、F87、P85和F68)的二元混合物。在大多数情况下,PBC混合物不稳定,在1 - 2天内会形成大聚集体并发生相分离。然而,通过以下两种方法可获得颗粒的稳定水分散体:(1)将PBC混合物超声处理1或2分钟;(2)在70℃加热30分钟。在所有组合中,L121/F127混合物(重量比1:1%)形成了具有小粒径的稳定分散体。使用一种水不溶性模型染料苏丹(III)检测了该系统的增溶能力。与F127胶束相比,L121/F127混合聚集体的增溶能力高出约10倍。总之,通过外部能量输入,由疏水性和亲水性PBC的混合物制备了纳米级尺寸的稳定水分散体。所制备的混合聚集体能够有效地包载疏水性化合物。

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