Mitochondria‐Targeting Small‐Molecule NIR‐II Fluorescent Probes for Imaging and Treatment of Tumor

Author:

Li Mingxun12,Wu Yibin12,He Chunfeng23,Li Xinxin24,Tao Ji2,Qu Chunrong2,Chen Wen‐Hua1,Cheng Zhen235ORCID

Affiliation:

1. School of Biotechnology and Health Sciences Wuyi University Jiangmen 529020 China

2. State Key Laboratory of Drug Research Molecular Imaging Center Shanghai Institute of Materia Medica Chinese Academy of Sciences Shanghai 201203 China

3. No.19A Yuquan Road University of Chinese Academy of Sciences Beijing 100049 China

4. Department of Radiology The First Hospital of Jilin University Changchun 130021 China

5. Shandong Laboratory of Yantai Drug Discovery Yantai Bohai Rim Advanced Research Institute for Drug Discovery Shandong 264117 China

Abstract

AbstractMitochondrial membrane potential (ΔΨm)‐targeting molecular probes play an essential role in diagnosing and treating diseases. Recently, the second near‐infrared window (NIR‐II, 1000–1700 nm) fluorescent imaging has been actively studied as an attractive imaging modality. However, small molecule ΔΨm‐targeting NIR‐II probes are rarely reported, especially for highly efficient imaging and treatment of tumors. Herein, a small molecule probe named TQPTPP is designed and synthesized by conjugation of a novel D‐A type dye TQT1009 with ΔΨm‐targeting molecule alkyl triphenylphosphine (TPP) through a polyethylene glycol‐8 (PEG8) linker. The conventional ICG dye is also coupled with TPP through PEG8 to produce ICGTPP as a comparison. TQPTPP showed a fluorescence quantum yield of 0.041% and excellent photothermal conversion efficiency (61.4%). It can be self‐assembled into nanoparticles and still preserve ΔΨm‐targeting capability. Tumor imaging is further performed, and results showed a long tumor retention time of TQPTPP (maximum tumor signal on day five and signal‐to‐noise ratio up to nine). As a comparison, ICGTPP remained a single molecule with ΔΨm‐targeting capability. But it has shorter tumor retention and lower photostability. These results suggested the novel D‐A small molecule ΔΨm‐targeting NIR‐II probe TQPTPP provided a new tool for diagnosing and treating tumors.

Funder

National Natural Science Foundation of China

Chinese Academy of Sciences

Publisher

Wiley

Subject

Pharmacology (medical),Biochemistry (medical),Genetics (clinical),Pharmaceutical Science,Pharmacology,Medicine (miscellaneous)

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