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Free radical homopolymerization, in heterogeneous medium, of linear and star-shaped polymerizable amphiphilic poly(ethers): A new way to design hydrogels well suited for biomedical applications

机译:线性和星形可聚合两亲性聚醚在非均相介质中的自由基均聚:设计非常适合生物医学应用的水凝胶的新方法

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摘要

The synthesis and the properties of selected macromolecular structures based on poly(ethylene oxide), (PEO) are discussed in the present paper. The first part deals with the development of efficient multifunctional anionic initiators aimed to design well-defined functionalizable star-shaped PEO's. Different approaches providing access to branched species of controlled hydrophilic /hydrophobic balance will be considered. The second part is devoted to the homopolymerization of amphiphilic bifunctional PEO macromonomers as an efficient way to yield PEO hydrogels directly in water. The extension of that approach to degradable PEO hydrogels or to the copolymerization of macromonomers with star-shaped PEO's partially functionalized with polymerizable entities will be briefly mentioned. These hydrogels served as semipermeable membrane for an artificial pancreas and as a template for the growth of nervous cells. [References: 42]
机译:本文讨论了基于聚环氧乙烷(PEO)的选定大分子结构的合成和性质。第一部分涉及高效多功能阴离子引发剂的开发,旨在设计定义明确的可官能化星形PEO。将考虑提供可控制的亲水/疏水平衡的分支物种的途径的不同方法。第二部分致力于两亲性双功能PEO大分子单体的均聚,作为直接在水中生产PEO水凝胶的有效方法。将简要提到该方法在可降解PEO水凝胶或大分子单体与可聚合实体部分官能化的星形PEO的共聚方面的扩展。这些水凝胶可作为人造胰腺的半透膜和神经细胞生长的模板。 [参考:42]

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