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通过铜介导的可逆失活自由基聚合制备具有生物成像应用的聚集诱导发光活性聚丙烯酸酯。

Aggregation-Induced Emission Active Polyacrylates via Cu-Mediated Reversible Deactivation Radical Polymerization with Bioimaging Applications.

作者信息

Ma Congkai, Han Ting, Kang Miaomiao, Liarou Evelina, Wemyss Alan M, Efstathiou Spyridon, Tang Ben Zhong, Haddleton David

机构信息

Department of Chemistry, University of Warwick, Coventry CV4 7AL, United Kingdom.

Center for AIE Research, College of Materials Science and Engineering, Shenzhen University, Shenzhen 518060, China.

出版信息

ACS Macro Lett. 2020 May 19;9(5):769-775. doi: 10.1021/acsmacrolett.0c00281. Epub 2020 May 8.

Abstract

The introduction of aggregation-induced emission (AIE) moieties into polymers results in smart materials with AIE characteristics, expanding their scope of applications. Herein, well-defined polymers with controlled molecular weight, low dispersity, and high end-group fidelity are produced via copper(0)-mediated reversible-deactivation radical polymerizations (Cu(0)-RDRPs). An AIE-containing initiator tetraphenylethene bromoisobutyrate (TPEBIB) has been synthesized, fully characterized, and utilized for the construction of different polyacrylate homopolymers and block copolymers bearing the TPE group with a range of molecular weights and architectures. All of the polymers exhibited AIE behavior. Notably, the hydrophobic TPE-poly(-butyl acrylate) (TPE-PBA)-containing block copolymers are transformed to TPE-poly(acrylic acid) (TPE-PAA)-based amphiphilic copolymers by facile deprotection, enabling pH-tunable self-assembly in aqueous media to give fluorescent nanoparticles with various sizes. The low cytotoxicity, high specificity, and excellent photostability render them promising candidates as lysosome-specific probes in biological imaging applications.

摘要

将聚集诱导发光(AIE)基团引入聚合物中可得到具有AIE特性的智能材料,从而扩大其应用范围。在此,通过铜(0)介导的可逆失活自由基聚合(Cu(0)-RDRP)制备了分子量可控、分散度低且端基保真度高的明确聚合物。一种含AIE的引发剂四苯乙烯溴异丁酸酯(TPEBIB)已被合成、全面表征,并用于构建不同分子量和结构的含TPE基团的聚丙烯酸酯均聚物和嵌段共聚物。所有聚合物均表现出AIE行为。值得注意的是,含疏水TPE-聚(丙烯酸丁酯)(TPE-PBA)的嵌段共聚物通过简便的脱保护反应转化为基于TPE-聚(丙烯酸)(TPE-PAA)的两亲共聚物,使其能够在水性介质中进行pH可调的自组装,从而得到各种尺寸的荧光纳米颗粒。低细胞毒性、高特异性和出色的光稳定性使其成为生物成像应用中溶酶体特异性探针的有前途的候选者。

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