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染料敏化为体内可再充电发光成像提供了更亮的余晖纳米颗粒未来。

Dye Sensitization Offers a Brighter Afterglow Nanoparticle Future for in vivo Recharged Luminescent Imaging.

机构信息

The Sixth Affiliated Hospital of Guangzhou Medical University, Qingyuan, Guangdong, 511500, P. R. China.

Department of Biochemistry and Molecular Biotechnology, University of Massachusetts Medical School, Worcester, Massachusetts, 01605, USA.

出版信息

Chemistry. 2022 May 6;28(26):e202104366. doi: 10.1002/chem.202104366. Epub 2022 Mar 19.

Abstract

While concerns about improving recharged afterglow intensity in vivo still motivate further exploration, afterglow nanoparticles (AGNP) offer unique optical merit for autofluorescence-free biological imaging. Apart from efforts enhancing the afterglow emission properties of AGNP, improving afterglow excitation response to visible or near infrared light is important but has lacked success. Dye sensitization has been used to improve the optical response of photovoltaic nanomaterials and to enhance upconversion luminescence efficiency. This concept has recently been expanded and applied to AGNPs. As a new multifunctional nanoprobe, such dye-sensitized AGNP takes advantage of both high spatial resolution fluorescence imaging and sensitive afterglow imaging. This Concept introduces the background, the concept, mechanism, and related imaging application, as well as reviewing existing challenges and proposing future developmental directions for the dye-sensitized AGNPs.

摘要

虽然提高体内余晖强度的担忧仍促使进一步探索,但余晖纳米粒子(AGNP)为无自发荧光生物成像提供了独特的光学优势。除了努力增强 AGNP 的余晖发射特性外,提高余晖对可见光或近红外光的激发响应也很重要,但一直未能成功。染料敏化已被用于提高光伏纳米材料的光学响应,并提高上转换发光效率。这一概念最近已被扩展并应用于 AGNPs。作为一种新型多功能纳米探针,这种染料敏化的 AGNP 利用了高空间分辨率荧光成像和敏感的余晖成像。本文介绍了染料敏化 AGNP 的背景、概念、机制及相关成像应用,并回顾了现有挑战,提出了染料敏化 AGNP 的未来发展方向。

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