纳米金作为宽场近红外荧光寿命成像中的增强型造影剂。

0 MATERIALS SCIENCE, MULTIDISCIPLINARY
Neelima Chacko, Menachem Motiei, Jadhav Suchita Suryakant, Michael Firer, Rinat Ankri
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引用次数: 0

摘要

电磁波谱的近红外(NIR)范围为组织成像提供了一个近乎透明的窗口。尽管基于近红外荧光的成像技术潜力巨大,但由于近红外区域具有吸收和发射特性的荧光分子稀缺,尤其是那些适合生物应用的荧光分子稀缺,其在基础研究和临床应用中的发展仍然受到限制。在本研究中,我们提出了一种新方法,将广泛使用的 IRdye 800NHS 荧光分子与金纳米球(GNSs)和金纳米棒(GNRs)相结合,制造出具有更高的量子产率(QY)和独特寿命的金纳米体。由于染料与金纳米颗粒(GNP)之间的分离距离不同,这些纳米体表现出不同的光物理特性。利用快速、高灵敏度的宽场荧光寿命成像(FLI)宏观设置,以及基于相位的分析,我们引入了金纳米体的复用功能。我们的方法展示了利用金纳米抗体和宽场荧光寿命成像的组合,在单幅图像中区分具有非常相似的短寿命的近红外染料的能力。此外,我们还展示了矿物油诱导的浆细胞瘤(MOPC315.bm)细胞对金纳米体的吸收,这表明金纳米体具有体外和体内应用的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Au nanodyes as enhanced contrast agents in wide field near infrared fluorescence lifetime imaging.

The near-infrared (NIR) range of the electromagnetic (EM) spectrum offers a nearly transparent window for imaging tissue. Despite the significant potential of NIR fluorescence-based imaging, its establishment in basic research and clinical applications remains limited due to the scarcity of fluorescent molecules with absorption and emission properties in the NIR region, especially those suitable for biological applications. In this study, we present a novel approach by combining the widely used IRdye 800NHS fluorophore with gold nanospheres (GNSs) and gold nanorods (GNRs) to create Au nanodyes, with improved quantum yield (QY) and distinct lifetimes. These nanodyes exhibit varying photophysical properties due to the differences in the separation distance between the dye and the gold nanoparticles (GNP). Leveraging a rapid and highly sensitive wide-field fluorescence lifetime imaging (FLI) macroscopic set up, along with phasor based analysis, we introduce multiplexing capabilities for the Au nanodyes. Our approach showcases the ability to differentiate between NIR dyes with very similar, short lifetimes within a single image, using the combination of Au nanodyes and wide-field FLI. Furthermore, we demonstrate the uptake of Au nanodyes by mineral-oil induced plasmacytomas (MOPC315.bm) cells, indicating their potential for in vitro and in vivo applications.

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