用于高对比度活体荧光血管造影的NIR-II抗原:最新进展和前景

IF 13.7 Q1 CHEMISTRY, MULTIDISCIPLINARY
Zhijun Zhang, Xue Li, Hao Yang, Caifa You, Kui Ren, Zengming Yang, Miaomiao Kang, Dong Wang, Ben Zhong Tang
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引用次数: 0

摘要

血管系统作为输送氧气和营养物质的重要生物网络和生理过程的动态调控中心,对维持人体健康和生活质量具有重要意义。因此,血管结构的精确可视化,以及与血管功能相关的血流动力学参数和分子谱的实时监测,对于血管疾病的早期诊断和预防性干预至关重要。荧光成像技术,特别是在第二个近红外窗口(NIR-II; 1000-1700 nm),不仅由于其高灵敏度、优异的空间分辨率和实时监测能力,而且由于NIR-II荧光优越的信本比和大的组织穿透深度,为这些苛刻的成像要求提供了明显的优势。在各种NIR-II荧光探针中,聚集诱导发射发光原(AIEgens)因其固有的有机性质而脱颖而出,更重要的是其独特的聚集增强发射特性,这与传统的荧光团明显不同,并能实现高分辨率成像。目前,已经报道了一系列高性能的NIR-II AIEgens,其荧光亮度较高,发射波长长,发射尾甚至延伸到NIR-IIa (1300-1400 nm)和NIR-IIb (1500-1700 nm)子窗口,并在活体荧光血管造影中显示出令人鼓舞的结果。这篇综述总结了NIR-II AIEgens在各种血管成像应用中的最新进展,按解剖位置分类,包括脑、腹部、后肢、耳、腋窝、肾脏和肿瘤血管成像。强调了分子设计策略和纳米工程方法,以实现更长的发射波长,更高的荧光亮度和提高生物利用度。最后,从材料工程、应用场景拓展、临床转化等方面探讨了目前存在的挑战和未来发展方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

NIR-II AIEgens for High-Contrast Intravital Fluorescence Angiography: Recent Advances and Prospects

NIR-II AIEgens for High-Contrast Intravital Fluorescence Angiography: Recent Advances and Prospects

The vasculature, as the essential biological network for oxygen and nutrients delivery and the dynamic regulatory center for physiological processes, is fundamentally important for maintaining human health and life quality. Accurate visualization of vascular structures, as well as real-time monitoring of hemodynamic parameters and molecular profiles associated with vascular function, are therefore crucial for early diagnosis and preventive interventions of vascular diseases. Fluorescence imaging technology, particularly in the second near-infrared window (NIR-II; 1000–1700 nm), offers distinct advantages for these demanding imaging requirements not only due to its high sensitivity, excellent spatial resolution, and real-time monitoring capability but also thanks to the superior signal-to-background ratio and large tissue penetration depth of NIR-II fluorescence. Among diverse NIR-II fluorescent probes, aggregation-induced emission luminogens (AIEgens) stand out for their intrinsic organic nature and, more importantly, for their unique aggregation-enhanced emission properties, which clearly differentiates them from traditional fluorophores and enable high-resolution imaging. Currently, a series of high-performance NIR-II AIEgens featuring relatively high fluorescence brightness and long emission wavelengths with emission tails even extending into the NIR-IIa (1300–1400 nm) and NIR-IIb (1500–1700 nm) subwindows have been reported and demonstrated encouraging results in intravital fluorescence angiography. This minireview summarizes recent advances in NIR-II AIEgens for various vascular imaging applications, categorized by anatomical locations, including cerebral, abdominal, hindlimb, ear, axillary, renal, and tumor angiography. The molecular design strategies and nanoengineering approaches to achieve longer emission wavelengths, higher fluorescence brightness, and improved bioavailability are highlighted. Finally, the remaining challenges and future directions are discussed from the aspects of materials engineering, application scenarios expansion, and clinical translation.

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CiteScore
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