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共轭聚集诱导荧光材料在生物荧光探针中的应用:综述。

Conjugated Aggregation-Induced Fluorescent Materials for Biofluorescent Probes: A Review.

机构信息

Key Laboratory of Rubber-Plastics of Ministry of Education/Shandong Province (QUST), School of Polymer Science and Engineering, Qingdao University of Science and Technology, 53-Zhengzhou Road, Qingdao 266042, China.

出版信息

Biosensors (Basel). 2023 Jan 19;13(2):159. doi: 10.3390/bios13020159.

Abstract

The common fluorescent conjugated materials present weak or quenching luminescent phenomena in the solid or aggregate state (ACQ), which limits their applications in medicine and biology. In the last two decades, certain materials, named aggregation-induced emission (AIE) fluorescent materials, have exhibited strong luminescent properties in the aggregate state, which can overcome the ACQ phenomenon. Due to their intrinsic properties, the AIE materials have been successfully used in biolabeling, where they can not only detect the species of ions and their concentrations in organisms, but can also monitor the organisms' physiological activity. In addition, these kinds of materials often present non-biological toxicity. Thus, AIE materials have become some of the most popular biofluorescent probe materials and are attracting more and more attention. This field is still in its early infancy, and several open challenges urgently need to be addressed, such as the materials' biocompatibility, metabolism, and so on. Designing a high-performance AIE material for biofluorescent probes is still challenging. In this review, based on the molecular design concept, various AIE materials with functional groups in the biofluorescent probes are introduced, including tetrastyrene materials, distilbene anthracene materials, triphenylamine materials, and hexaphenylsilole materials. In addition, according to the molecular system design strategy, the donor-acceptor (D-A) system and hydrogen-bonding AIE materials used as biofluorescent probes are reviewed. Finally, the biofluorescent probe design concept and potential evolution trends are discussed. The final goal is to outline a theoretical scaffold for the design of high-performance AIE biofluorescent probes that can at the same time further the development of the applications of AIE-based biofluorescent probes.

摘要

常见的荧光共轭材料在固体或聚集状态下表现出较弱或猝灭的发光现象(ACQ),这限制了它们在医学和生物学中的应用。在过去的二十年中,某些材料,命名为聚集诱导发光(AIE)荧光材料,在聚集状态下表现出强烈的发光特性,可以克服 ACQ 现象。由于其固有特性,AIE 材料已成功用于生物标记,不仅可以检测生物体内离子的种类及其浓度,还可以监测生物的生理活性。此外,这些材料通常表现出非生物毒性。因此,AIE 材料已成为最受欢迎的生物荧光探针材料之一,吸引了越来越多的关注。该领域仍处于起步阶段,有几个开放性挑战亟待解决,例如材料的生物相容性、代谢等。设计用于生物荧光探针的高性能 AIE 材料仍然具有挑战性。在这篇综述中,基于分子设计概念,介绍了具有生物荧光探针功能基团的各种 AIE 材料,包括四苯乙烯材料、二苯乙烯蒽材料、三苯胺材料和六苯基硅咯材料。此外,根据分子体系设计策略,综述了作为生物荧光探针的供体-受体(D-A)体系和氢键 AIE 材料。最后,讨论了生物荧光探针的设计概念和潜在的演化趋势。最终目标是为设计高性能 AIE 生物荧光探针勾勒出一个理论框架,同时进一步推动基于 AIE 的生物荧光探针的应用发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2d54/9953538/28689983d546/biosensors-13-00159-g003.jpg

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