化学
转移
荧光
乳腺癌转移
转移性乳腺癌
线粒体
乳腺癌
下调和上调
癌症
癌症研究
外科切除术
癌细胞
切除术
生物物理学
病理
分子探针
膜
人体乳房
荧光寿命成像显微镜
作者
ZhiHao Yang,Zhichao Yang,Jiangtao Zhao,A. Fu,Guojiang Mao,Liufang Hu,Juan Ouyang,Chunyan Li
标识
DOI:10.1021/acs.analchem.5c04537
摘要
Metastatic breast cancer (MBC) is the primary cause of breast cancer-related mortality, where mitochondrial H 2 S (Mito-H 2 S) serves as a key metastatic mediator. However, further understanding of Mito-H 2 S metabolism during metastasis remains limited, largely due to a lack of specific imaging probes. Additionally, the inherently low signal-to-noise (S/N) ratio of most fluorescent probes presents significant challenges for tumor localization and surgical resection. To address these, we developed an activatable near-infrared fluorescent probe (SCy-H 2 S) featuring triple-synergistic mitochondrial targeting: positive ζ-potential driven electrostatic interactions, high-affinity binding to membrane protein, and selective activation by Mito-H 2 S. Upon interaction with Mito-H 2 S, the probe exhibits a pronounced fluorescence turn-on, achieving a high S/N ratio for real-time tracking of Mito-H 2 S dynamics. Moreover, by exploiting the role of Mito-H 2 S, we elucidate the mechanistic relationship between Mito-H 2 S and mitochondrial ATP production during cancer progression. The probe successfully visualizes Mito-H 2 S upregulation during metformin-induced liver injury and breast cancer metastasis, enabling the accurate delineation of tumor margins for fluorescence-guided resection of liver metastases.
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