Autor: |
Qian Jia, Yang Yang, Zuo Yang, Wang Yongdong, Ruili Zhang, Yanbin Feng, Zheng Li, Haohao Yan, Kanyi Pu, Yu Ji, Zhongliang Wang |
Rok vydání: |
2022 |
Předmět: |
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Zdroj: |
Science Bulletin. 67:288-298 |
ISSN: |
2095-9273 |
DOI: |
10.1016/j.scib.2021.11.003 |
Popis: |
Dysregulated energy metabolism has recently been recognized as an emerging hallmark of cancer. Tumor cells, which are characterized by abnormal glycolysis, exhibit a lower extracellular pH (6.5–7.0) than normal tissues (7.2–7.4), providing a promising target for tumor-specific imaging and therapy. However, most pH-sensitive materials are unable to distinguish such a subtle pH difference owing to their wide and continuous pH-responsive range. In this study, we developed an efficient strategy for the fabrication of a tumor metabolic acidity-activatable calcium phosphate (CaP) fluorescent probe (termed MACaP9). Unlike traditional CaP-based biomedical nanomaterials, which only work within more acidic organelles, such as endosomes and lysosomes (pH 4.0–6.0), MACaP9 could not only specifically respond to the tumor extra-cellular pH but also rapidly convert pH variations into a distinct fluorescence signal to visually distinguish tumor from normal tissues. The superior sensitivity and specificity of MACaP9 enabled high-contrast visualization of a broad range of tumors, as well as small tumor lesions. |
Databáze: |
OpenAIRE |
Externí odkaz: |
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