Protein-Interference-Free and Kidney-Targeting NIR Fluorophores for Accurate in Vivo Imaging of H2S2 during Kidney Ferroptosis.

IF 10 2区 医学 Q1 ENGINEERING, BIOMEDICAL
Zhangkang Lv, Jing Wang, Jinyuan Xu, Xiaoshan Chen, Dongxue Lu, Jingting Huang, Xing-Can Shen, Hua Chen
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引用次数: 0

Abstract

High-fidelity kidney function imaging is important for assessing the nephrotoxicity of drugs and diagnosing renal diseases. However, the current challenges in achieving accurate kidney imaging include unspecific signal enhancement due to albumin binding and relatively low distribution of imaging agents in kidneys. Here, for the first time, a side-chain engineering strategy that incorporates hydrophilic six-membered heterocycles into aza-hemicyanine for generating high-performance kidney imaging agents with protein-interference-free and kidney-targeting features is proposed. Based on these unique aza-hemicyanine dyes, the first kidney-targeting and albumin-insensitive H2S2 near-infrared (NIR) fluorescent probe NA-H2S2 is designed, which demonstrates effective kidney distribution following intravenous injection and is specifically activated by H2S2. The designed probe presents a highly rapid, selective and sensitive response to H2S2 with a detection limit as low as 24.21 nm. Additionally, it successfully achieves real-time in vivo NIR fluorescence imaging of H2S2 during erastin/cisplatin induced renal ferroptosis. Moreover, it also enables rapid detection of H2S2 through in vitro optical urinalysis, offering significant diagnostic value for renal ferroptosis. Overall, this study not only presents a practical kidney-targeting H2S2 fluorescent probe NA-H2S2 with increased imaging accuracy but also provides promising kidney-targeting and albumin-insensitive aza-hemicyanine dyes for further development of kidney disease-related probes.

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来源期刊
Advanced Healthcare Materials
Advanced Healthcare Materials 工程技术-生物材料
CiteScore
14.40
自引率
3.00%
发文量
600
审稿时长
1.8 months
期刊介绍: Advanced Healthcare Materials, a distinguished member of the esteemed Advanced portfolio, has been dedicated to disseminating cutting-edge research on materials, devices, and technologies for enhancing human well-being for over ten years. As a comprehensive journal, it encompasses a wide range of disciplines such as biomaterials, biointerfaces, nanomedicine and nanotechnology, tissue engineering, and regenerative medicine.
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