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一种通过硫醇-烯化学与基于反应性聚醚的纳米颗粒构建功能性微凝胶的强大平台。

A robust platform for functional microgels via thiol-ene achemistry with reactive polyether-based nanoparticles.

作者信息

Fleischmann Carolin, Gopez Jeffrey, Lundberg Pontus, Ritter Helmut, Killops Kato L, Hawker Craig J, Klinger Daniel

机构信息

Institut für Organische Chemie und Makromolekulare Chemie, Heinrich Heine Universität Düsseldorf, Universitätstraße 1, D-40225 Düsseldorf, Germany ; Materials Research Laboratory, Department of Chemistry and Biochemistry, and the Materials Department, Santa Barbara, California 93106, USA.

Materials Research Laboratory, Department of Chemistry and Biochemistry, and the Materials Department, Santa Barbara, California 93106, USA.

出版信息

Polym Chem. 2015 Mar 21;6(11):2029-2037. doi: 10.1039/C4PY01766H.

Abstract

We herein report the development of crosslinked polyether particles as a reactive platform for the preparation of functional microgels. Thiol-ene crosslinking of poly(allyl glycidyl ether) in miniemulsion droplets - stabilized by a surface active, bio-compatible polyethylene glycol block copolymer - resulted in colloidal gels with a PEG corona and an inner polymeric network containing reactive allyl units. The stability of the allyl groups allows the microgels to be purified and stored before a second, subsequent thiol-ene functionalization step allows a wide variety of pH- and chemically-responsive groups to be introduced into the nanoparticles. The facile nature of this synthetic platform enables the preparation of microgel libraries that are responsive to different triggers but are characterized by the same size distribution, surface functionality, and crosslinking density. In addition, the utilization of a crosslinker containing cleavable ester groups renders the resulting hydrogel particles degradable at elevated pH or in the presence of esterase under physiological conditions.

摘要

我们在此报告了交联聚醚颗粒作为制备功能性微凝胶的反应平台的开发。在由表面活性、生物相容性聚乙二醇嵌段共聚物稳定的微乳液液滴中,聚(烯丙基缩水甘油醚)的硫醇-烯交联产生了具有PEG冠层和含有反应性烯丙基单元的内部聚合物网络的胶体凝胶。烯丙基基团的稳定性使得微凝胶在进行第二次后续硫醇-烯功能化步骤之前能够被纯化和储存,该步骤允许将多种pH响应和化学响应基团引入纳米颗粒中。这个合成平台的简便性使得能够制备对不同触发因素有响应但具有相同尺寸分布、表面功能和交联密度的微凝胶库。此外,使用含有可裂解酯基的交联剂使得所得的水凝胶颗粒在升高的pH值下或在生理条件下存在酯酶的情况下可降解。

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