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用于药物增溶的嵌段共聚物:聚醚和聚酯胶束核形成嵌段的相对疏水性。

Block copolymers for drug solubilisation: relative hydrophobicities of polyether and polyester micelle-core-forming blocks.

作者信息

Attwood David, Booth Colin, Yeates Stephen G, Chaibundit Chiraphon, Ricardo Nágila M P S

机构信息

School of Pharmacy and Pharmaceutical Sciences, University of Manchester, Manchester M13 9PL, UK.

出版信息

Int J Pharm. 2007 Dec 10;345(1-2):35-41. doi: 10.1016/j.ijpharm.2007.07.039. Epub 2007 Aug 6.

Abstract

Published values of the critical micelle concentration are tabulated for diblock copolymers E(m)P(n), E(m)B(n), E(m)S(n), E(m)L(n), E(m)VL(n) and E(m)CL(n), where E denotes a chain unit derived from ethylene oxide, P from propylene oxide, B from 1,2-butylene oxide, S from styrene oxide, L from dl-lactide, VL from gamma-valerolactone and CL from epsilon-caprolactone, and the subscripts denote average chain lengths. Noting that log(cmc/moldm(-3) is proportional to the standard Gibbs energy of micellisation, the dependence of this quantity on hydrophobic block length (n) is explored for a given E-block length. Superposition of data allows ranking of the hydrophobicities of the chain units. The ratios relative to the least hydrophobic unit are: P : L : B : VL : S : CL = 1 : 4 : 6 : 10 : 12 : 12 Transitions in the slope of log(cmc) versus n are assigned to changes in the unimer-micelle equilibrium and related to the formation of unimolecular micelles and, at high values of n, to the completion of that process. The formation transition is seen in the plots for all the copolymers except the least hydrophobic, E(m)P(n). The completion transition is seen in the plots for E(m)CL(n) and E(m)L(n) copolymers, as these alone include results for copolymers with very lengthy hydrophobic blocks.

摘要

已公布的二嵌段共聚物E(m)P(n)、E(m)B(n)、E(m)S(n)、E(m)L(n)、E(m)VL(n)和E(m)CL(n)的临界胶束浓度值列于表中,其中E表示衍生自环氧乙烷的链单元,P表示衍生自环氧丙烷的链单元,B表示衍生自1,2-环氧丁烷的链单元,S表示衍生自氧化苯乙烯的链单元,L表示衍生自dl-丙交酯的链单元,VL表示衍生自γ-戊内酯的链单元,CL表示衍生自ε-己内酯的链单元,下标表示平均链长。注意到log(cmc/mol dm⁻³)与胶束化的标准吉布斯自由能成正比,对于给定的E链段长度,研究了该量对疏水链段长度(n)的依赖性。数据叠加可对链单元的疏水性进行排序。相对于疏水性最低单元的比率为:P : L : B : VL : S : CL = 1 : 4 : 6 : 10 : 12 : 12 log(cmc)对n的斜率变化归因于单分子-胶束平衡的变化,并与单分子胶束的形成有关,在n值较高时,与该过程的完成有关。除疏水性最低的E(m)P(n)外,在所有共聚物的图中都可看到形成转变。在E(m)CL(n)和E(m)L(n)共聚物的图中可看到完成转变,因为只有这些共聚物包含具有非常长疏水链段的共聚物的结果。

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