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一锅法合成含聚缩水甘油和聚环氧乙烷臂的星形大分子。

One-pot synthesis of star-shaped macromolecules containing polyglycidol and poly(ethylene oxide) arms.

作者信息

Lapienis Grzegorz, Penczek Stanislaw

机构信息

Centre of Molecular and Macromolecular Studies, Polish Academy of Sciences, Sienkiewicza 112, 90-363 Lodz, Poland.

出版信息

Biomacromolecules. 2005 Mar-Apr;6(2):752-62. doi: 10.1021/bm049417d.

Abstract

Synthesis of fully hydrophilic star-shaped macromolecules with different kinds of arms (A(x)B(y)C(z)) based on polyglycidol (PGL, A(x)) and poly(ethylene oxide) (PEO, C(z)) arms and diepoxy compounds (diglycidyl ethers of ethylene glycol (DGEG) or neopentyl glycol (DGNG) in the core, B(y)) forming the core is described. Precursors of arms were prepared by polymerization of glycidol with protected -OH groups. The first-generation stars were formed in the series of consecutive-parallel reactions of arms A(x) with diepoxy compounds (B). These first-generation stars (A(x)B(y)), having approximately O-, Mt+ groups on the cores, were used as multianionic initiators for the second generation of arms (C(z)) built by polymerization of ethylene oxide. The products with M(n) up to 10(5) and having up to approximately 40 arms were obtained. The number of arms (f) was determined by direct measurements of M(n) of the first-generation stars (M(n) of arms A(x) is known), compared with f calculated from the branching index g, determined from R(g) measured with size-exclusion chromatography (SEC) triple detection with TriSEC software. The progress of the star formation was monitored by 1H NMR and SEC. These novel water-soluble stars, having a large number of hydroxyl groups, both at the ends of PEO arms as well as within the PGL arms, can be functionalized and further used for attaching compounds of interest. This approach opens, therefore, a new way of "multiPEGylation".

摘要

描述了基于聚缩水甘油(PGL,A(x))和聚环氧乙烷(PEO,C(z))臂以及核心处的双环氧化合物(乙二醇二缩水甘油醚(DGEG)或新戊二醇二缩水甘油醚(DGNG),B(y))合成具有不同种类臂(A(x)B(y)C(z))的完全亲水性星形大分子。臂的前体通过缩水甘油与受保护的 -OH 基团聚合制备。第一代星形分子是在臂 A(x) 与双环氧化合物(B)的一系列连续 - 平行反应中形成的。这些在核心上具有大约 O - 、Mt + 基团的第一代星形分子(A(x)B(y))用作通过环氧乙烷聚合构建第二代臂(C(z))的多阴离子引发剂。获得了 Mn 高达 10(5) 且具有多达约 40 条臂的产物。通过直接测量第一代星形分子的 Mn(已知臂 A(x) 的 Mn)来确定臂的数量(f),并与根据支化指数 g 计算的 f 进行比较,支化指数 g 由使用 TriSEC 软件的尺寸排阻色谱(SEC)三重检测测量的 R(g) 确定。通过 1H NMR 和 SEC 监测星形分子形成的进展。这些新型水溶性星形分子在 PEO 臂的末端以及 PGL 臂内都具有大量羟基,可以进行功能化并进一步用于连接感兴趣的化合物。因此,这种方法开辟了一种新的“多聚乙二醇化”方式。

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