李兴淑

作者: 时间:2025-08-19 点击数:

1.H. Liu, Z. Li, X. Zhang, Y. Xu, G. Tang, Z. Wang, Y. Y. Zhao, M. R. Ke, B. Y. Zheng, S. Huang, J. D. Huang*,X. Li*. Phthalocyanine aggregates as semiconductor-like photocatalysts for hypoxic-tumor photodynamic immunotherapy.Nat. Commun.2025, 16, 326.

2. Y. Y. Zhao, Y. Xu, X. Zhang, Z. Chen, H. Kim,X. Li*, J. Yoon*. A hypoxia‐triggered bioreduction of hydrophilic type I photosensitizer for switchable in vivo photoacoustic imaging and high‐specificity cancer phototherapy.Angew. Chem. Int. Ed.2025, 137, e202506412.

3.Y. Y. Zhao, X. Zhang, Y. Xu, Z. Chen, B. Hwang, H. Kim, H. Liu,X. Li*, J. Yoon*. A renal clearable nano-assembly with Förster Resonance Energy Transfer amplified superoxide radical and heat generation to overcome hypoxia resistance in phototherapeutics.Angew. Chem. Int. Ed.2024, 63, e202411514.

4.R. Wang, K. H. Kim, J. Yoo,X. Li*, N. Kwon, Y. H. Jeon, S. K. Shin, S. S. Han, D. S. Lee*, J. Yoon*. Ananostructured phthalocyanine/albumin supramolecular assembly for fluorescence turn-on imaging and photodynamic immunotherapy.ACS Nano2022, 16, 3045-3058.

5.Y. Zhao, L. Zhang, Z. Chen, B. Y. Zheng, M. Ke,X. Li*, J. D. Huang*. Nanostructured phthalocyanine assemblies with efficient synergistic effect of type I photoreaction and photothermal action to overcome tumor hypoxia in photodynamic therapy.J. Am. Chem. Soc.2021, 143, 13980-13989.

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