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吲哚并-[2,3-]喹喔啉:用于稳定室温液晶自组装、聚集诱导发光及生物成像应用的核心结构。

Indolo-[2,3-]quinoxaline: A Core for the Stabilization of Room Temperature Liquid Crystalline Self-Assembly, Aggregation-Induced Emission, and Bioimaging Applications.

作者信息

Ahmed Rahul, Sharma Vinay, Thakar Shweta, Behera Paresh Kumar, Kandpal Praveen, Shankar Rao Doddamane Sreenivasamurthy, Ammathnadu Sudhakar Achalkumar

机构信息

Department of Chemistry, Indian Institute of Technology Guwahati, Guwahati, Assam 781039, India.

Department of Chemistry, School of Science, Gujarat University, Ahmedabad , Gujarat 380009, India.

出版信息

ACS Appl Bio Mater. 2025 Jul 21;8(7):6278-6290. doi: 10.1021/acsabm.5c00762. Epub 2025 Jun 13.

Abstract

Aggregation-induced emission (AIE) is a significant property that enables the translation of the fluorescence emission of chromophores in solution to the solid state. In recent years, the development of AIE-active liquid crystals has garnered considerable interest. In this context, we introduce a class of indolo[2,3-]quinoxaline () based luminescent liquid crystals, demonstrating excellent solubility and thermal stability. The efficient space-filling interactions in compounds with seven and ten peripheral -alkoxy chains ( and ) stabilize a columnar liquid crystalline phase at room temperature. Interestingly, these compounds exhibit tunable luminescence and liquid crystalline self-assembly in addition to technologically important AIE properties, in contrast to the commonly observed aggregation-caused quenching (ACQ) in the case of discotic liquid crystals (DLC). Compound was selected for bioimaging studies due to its robust fluorescence behavior and AIE-active properties, facilitating uniform staining throughout the nematode cell body. Under aggregated conditions, visualization of the nematode body was significantly enhanced. Additionally, was explored as a fluorescent probe for staining MCF7 cancer cells, where cellular uptake and localization studies revealed its exceptional fluorescence intensity and remarkable ability to target and visualize cancer cells. Its ability to stain individual cancer cells enabled high-contrast imaging with striking fluorescence signals, while its precise localization illuminated distinct cellular structures, thereby enhancing the resolution of bioimaging.

摘要

聚集诱导发光(AIE)是一种重要特性,它能使发色团在溶液中的荧光发射转化为固态荧光发射。近年来,具有AIE活性的液晶的发展引起了广泛关注。在此背景下,我们介绍了一类基于吲哚并[2,3 - ]喹喔啉的发光液晶,它们具有出色的溶解性和热稳定性。含有七条和十条外围烷氧基链(和)的化合物中有效的空间填充相互作用在室温下稳定了柱状液晶相。有趣的是,与盘状液晶(DLC)中常见的聚集导致猝灭(ACQ)不同,这些化合物除了具有重要的AIE性质外,还表现出可调谐发光和液晶自组装特性。化合物因其稳健的荧光行为和AIE活性性质被选用于生物成像研究,有助于在线虫细胞体内实现均匀染色。在聚集条件下,线虫身体的可视化显著增强。此外,还被用作染色MCF7癌细胞的荧光探针,细胞摄取和定位研究表明其具有出色的荧光强度以及靶向和可视化癌细胞的卓越能力。它对单个癌细胞进行染色的能力实现了具有显著荧光信号的高对比度成像,而其精确的定位照亮了不同的细胞结构,从而提高了生物成像的分辨率。

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