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首页> 外文期刊>Materials Chemistry Frontiers >Redox-responsive fluorescent AIE bioconjugate with aggregation enhanced retention features for targeted imaging reinforcement and selective suppression of cancer cells
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Redox-responsive fluorescent AIE bioconjugate with aggregation enhanced retention features for targeted imaging reinforcement and selective suppression of cancer cells

机译:Redox-responsive荧光AIE bioconjugate聚合增强的保留特性目标成像强化和选择性抑制癌细胞

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摘要

Considering the distinctions of cancer cell microenvironments, smart systems with stimulus-triggered features have become increasingly popular nowadays. These smart systems are regarded as efficient approaches for targeted cancer cell imaging and selective tumoricidal therapy. On account of the highly reductive micro-environment in tumor tissues, a redox-responsive fluorescent AIE bioprobe based on a disulfide bond is designed and synthesized. This AIE bioprobe possesses excellent water dispersibility and nano-size stability under physiological conditions. Under the reductive microenvironment of tumor cells, the water dispersibility of the AIE probe becomes worse owing to the cleavage of carboxyl groups. The dispersibility alteration further induces the aggregation of AIE nanoparticles and enhances intracellular retention, allowing for targeted imaging reinforcement and selective suppression of cancer cells.
机译:考虑到癌症细胞的区别微环境,智能系统stimulus-triggered特性已成为现在越来越受欢迎。系统被认为是有效的方法针对癌症细胞成像和选择性杀肿瘤的治疗。还原微环境在肿瘤组织中,一个redox-responsive荧光AIE bioprobe基础设计并合成二硫键。这AIE bioprobe拥有优秀的水可分散性纳米大小的稳定生理条件。肿瘤细胞的微环境,水可分散性的AIE探针变得更糟由于羧基的乳沟。可分散性变化进一步诱发AIE纳米粒子的聚合和增强细胞内潴留,允许目标成像强化和选择性抑制癌症细胞。

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