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通过体内搭便车内源性白蛋白获得的不对称菁染料实现了高性能的近红外二区/光声成像和光热治疗。

Unsymmetrical cyanine dye via in vivo hitchhiking endogenous albumin affords high-performance NIR-II/photoacoustic imaging and photothermal therapy.

机构信息

Department of Nuclear Medicine, Xijing Hospital, Fourth Military Medical University, #127 West Changle Road, Shanxi, 710032, Xi'an, People's Republic of China.

Institute of Clinical Pharmacy and Pharmacology, Jining First People's Hospital, Jining Medical University, Jining, 272000, People's Republic of China.

出版信息

J Nanobiotechnology. 2021 Oct 24;19(1):334. doi: 10.1186/s12951-021-01075-0.

Abstract

Herein, an unprecedented synergistic strategy for the development of high-performance NIR-II fluorophore is proposed and validated. Based on an unsymmetrical cyanine dye design strategy, the NIR-II emissive dye NIC was successfully developed by replacing only one of the indoline donors of symmetrical cyanine dye ICG with a fully conjugated benz[c,d]indole donor. This minor structural change maximally maintains the high extinction coefficient advantage of cyanine dyes. NIC-ER with endogenous albumin-hitchhiking capability was constructed to further enhance its in vivo fluorescence brightness. In the presence of HSA (Human serum albumin), NIC-ER spontaneously resides in the albumin pocket, and a brilliant ~89-fold increase in fluorescence was observed. Due to its high molar absorptivity and moderate quantum yield, NIC-ER in HSA exhibits bright NIR-II emission with high photostability and significant Stokes shift (>110 nm). Moreover, NIC-ER was successfully employed for tumor-targeted NIR-II/PA imaging and efficient photothermal tumor elimination. Overall, our strategy may open up a new avenue for designing and constructing high-performance NIR-II fluorophores.

摘要

本文提出并验证了一种前所未有的协同策略,用于开发高性能近红外二区(NIR-II)荧光染料。基于非对称菁染料设计策略,通过用完全共轭的苯并[c,d]吲哚供体取代对称菁染料 ICG 中的一个吲哚供体,成功开发出了 NIR-II 发射染料 NIC。这种微小的结构变化最大限度地保持了菁染料的高光吸收系数优势。具有内源性白蛋白搭乘能力的 NIC-ER 被构建以进一步增强其体内荧光亮度。在人血清白蛋白(HSA)存在的情况下,NIC-ER 自发地驻留在白蛋白口袋中,观察到荧光强度显著增强约 89 倍。由于其高摩尔吸光率和适中的量子产率,NIC-ER 在 HSA 中表现出明亮的 NIR-II 发射,具有高光稳定性和显著的斯托克斯位移(>110nm)。此外,NIC-ER 成功用于肿瘤靶向的 NIR-II/PA 成像和高效光热肿瘤消除。总体而言,我们的策略可能为设计和构建高性能 NIR-II 荧光染料开辟新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fbab/8543934/afba0d43b33e/12951_2021_1075_Fig1_HTML.jpg

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