NIR AIE luminogens for primary and metastasis tumor imaging and tracking applications†

IF 6 2区 材料科学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Yujiao Zhu, Yuhang Zeng, Huimin Liu, Yuting Yin, Bin Chen and Rong Hu
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引用次数: 0

Abstract

Modern lifestyle changes, including irregular diets and late-night activities, have contributed to a significant rise in cancer rates, particularly among younger demographics, highlighting the pressing need for early detection and treatment. Fluorescence imaging techniques play a crucial role in tumor diagnosis, yet traditional organic fluorescent materials suffer from limitations such as poor photostability and fluorescence quenching in aggregates. This paper introduces the design and synthesis of four aggregation-induced emission (AIE) molecules with near-infrared I emission, which are aimed at overcoming fluorescence quenching in the molecular aggregation state. The photophysical properties of these molecules (BTA-TT, BTA-TTM, BTA-FT, and BTA-FTM) were investigated and they exhibited TICT and AIE behaviors in varying water fractions, along with notably large Stokes shifts. In vitro imaging of the four molecules successfully imaged lysosomes within 4T1 cells and they displayed minimal dark toxicity. Moreover, these AIEgens exhibited excellent anti-photobleaching properties, which were superior to those of commercial dyes. In addition, BTA-FTM nanoparticles coated with PEG-2000 showed biosafety and enabled tumor imaging in mice for 59 hours, revealing the tumor metastases in the heart and lungs of mice. This research contributes to the development of novel near-infrared molecules for advanced diagnostic applications.

Abstract Image

原发性和转移性肿瘤成像和跟踪应用的近红外AIE发光源
现代生活方式的改变,包括不规律的饮食和深夜活动,导致癌症发病率显著上升,尤其是在年轻人中,这凸显了早期发现和治疗的迫切需要。荧光成像技术在肿瘤诊断中发挥着至关重要的作用,但传统的有机荧光材料存在光稳定性差、荧光猝灭等局限性。本文介绍了四种具有近红外I发射的聚集诱导发射(AIE)分子的设计和合成,旨在克服分子聚集态下的荧光猝灭。研究了这些分子(BTA-TT、BTA-TTM、BTA-FT和BTA-FTM)的光物理性质,发现它们在不同的水馏分中表现出TICT和AIE行为,并具有明显的大Stokes位移。这四种分子的体外成像成功地成像了4T1细胞内的溶酶体,它们显示出最小的暗毒性。此外,这些AIEgens具有优异的抗光漂白性能,优于工业染料。此外,PEG-2000包被的BTA-FTM纳米颗粒显示出生物安全性,并在小鼠体内进行肿瘤成像59小时,显示肿瘤在小鼠心脏和肺部的转移。这项研究有助于开发新型近红外分子用于先进的诊断应用。
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来源期刊
Materials Chemistry Frontiers
Materials Chemistry Frontiers Materials Science-Materials Chemistry
CiteScore
12.00
自引率
2.90%
发文量
313
期刊介绍: Materials Chemistry Frontiers focuses on the synthesis and chemistry of exciting new materials, and the development of improved fabrication techniques. Characterisation and fundamental studies that are of broad appeal are also welcome. This is the ideal home for studies of a significant nature that further the development of organic, inorganic, composite and nano-materials.
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