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非线型嵌段共聚物 Tetronic® T904 在水溶液中的胶束化诱导和胶束相转变。

Induced micellization and micellar transitions in aqueous solutions of non-linear block copolymer Tetronic® T904.

机构信息

Department of Chemistry, V.N. South Gujarat University, Surat 395 007, India.

出版信息

J Colloid Interface Sci. 2010 Nov 15;351(2):449-56. doi: 10.1016/j.jcis.2010.07.046. Epub 2010 Jul 23.

DOI:10.1016/j.jcis.2010.07.046
PMID:20797723
Abstract

Tetronics® (Poloxamines) are the least studied block copolymers with an X-shaped molecular geometry formed by four poly (propylene oxide, PPO) and poly (ethylene oxide, PEO) block chains, bonded to a central ethylenediamine group. Compared to their linear counterparts, the Pluronics, Tetronics® are novel, in that they possess superior physicochemical properties, and are relatively less studied. A complete understanding of their solution behavior under different solution conditions can make them competitive candidates for novel drug delivery systems. The micellization behavior and aqueous solution properties of Tetronic® T904 [(EO(15)PO(17)) (2)NCH(2)CH(2)N (PO(17)EO(15))(2)] have been determined by cloud point, viscosity, dynamic light scattering (DLS), small-angle neutron scattering (SANS), and nuclear magnetic resonance (NMR) measurements. The copolymer formed spherical micelles at 30°C with a core radius (R(c)) of about 2.5 nm, a hard sphere radius (R(hs)) of 5.2 nm and an aggregation number (N(agg)) of 10. The effect of copolymer concentration, temperature, pH and salt on the micellar and phase behavior is examined. The copolymer has been found to exist in aggregated form only at higher pH values of >8. An increase in micelle size and aggregation has been observed for an increase in temperature and salt concentration, mainly due to the dehydration of the hydrated PEO shell. The added salts (NaCl, Na(2)SO(4) and Na(3)PO(4)) induce micellization and favor the micellar transition at lower temperatures due to the "salting out effect"; the effect of anions follows the Hofmeister series (PO(4)(3-)>SO(4)(2-)>Cl(-)).

摘要

特洛龙®(泊洛沙姆)是具有 X 型分子几何形状的嵌段共聚物中研究最少的一种,由四个聚(氧化丙烯,PPO)和聚(氧化乙烯,PEO)嵌段链组成,连接到一个中心乙二胺基团上。与它们的线性对应物普朗尼克相比,特洛龙®是新颖的,因为它们具有优越的物理化学性质,而且相对研究较少。在不同的溶液条件下,对其溶液行为的全面了解可以使它们成为新型药物传递系统的有竞争力的候选者。通过浊点、粘度、动态光散射(DLS)、小角中子散射(SANS)和核磁共振(NMR)测量,确定了 Tetronic®T904[(EO(15)PO(17))(2)NCH(2)CH(2)N(PO(17)EO(15))(2)]的胶束化行为和水溶液性质。该共聚物在 30°C 下形成球形胶束,核半径(R(c))约为 2.5nm,硬球半径(R(hs))为 5.2nm,聚集数(N(agg))为 10。研究了共聚物浓度、温度、pH 值和盐对胶束和相行为的影响。发现该共聚物仅在 pH 值大于 8 的较高值下以聚集形式存在。随着温度和盐浓度的增加,观察到胶束尺寸和聚集度增加,这主要是由于水合 PEO 壳的去水合作用。添加的盐(NaCl、Na(2)SO(4)和 Na(3)PO(4))由于“盐析效应”诱导胶束化并有利于在较低温度下进行胶束化转变;阴离子的影响遵循豪夫迈斯特序列(PO(4)(3-)>SO(4)(2-)>Cl(-))。

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