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同专业博导
刘贻尧
( 教授 )
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的个人主页 //www.math-engineering.uestc.edu.cn/liuyiyao/zh_CN/index.htm
博士生导师
学术荣誉:
新世纪优秀人才计划
教师姓名:
刘贻尧
教师拼音名称:
liuyiyao
电子邮箱:
liuyiyao@uestc.edu.cn
所在单位:
生命科学与技术学院
学历:
博士研究生毕业
性别:
男
学位:
工学博士学位
职称:
教授
在职信息:
在职人员
毕业院校:
群马大学
博士生导师
学科:
生物化学与分子生物学生物医学工程
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论文成果
[1 Endogenous/exogenous dual-responsive nanozyme for photothermally enhanced ferroptosis-immune reciprocal synergistic tumor therapy. Science Advances, 2025, DOI: 10.1126/sciadv.adq3870. (accepted, in press)
[2 Biomimetic gold nano-modulator for deep-tumor NIR-II photothermal immunotherapy via gaseous microenvironment remodeling strategy. Journal of Nanobiotechnology. 2025, 23: 220.
[3 Nanovesicles for lipid metabolism reprogram-enhanced ferroptosis and magnetotherapy of refractory tumors and inhibiting metastasis with activated innate immunity. ACS Nano. 2025, 19: 7213−7230.
[4 DNA origami-based composite nanosandwich for iteratively potentiated chemo-immunotherapy. Journal of Controlled Release. 2025, 379: 452-465.
[5 Notch-1 regulates collective cancer cell migration by controlling intercellular junction and cytoskeletal organization. Cell Proliferation. 2025, 58: e13754.
[6 Amoeba-inspired soft robot for integrated tumor/infection therapy and painless postoperative drainage. Advanced Science. 2024, 11: 2407148
[7 Aligned fibrous scaffolds promote directional migration of breast cancer cells via caveolin-1/YAP-mediated mechanosensing. Materials Today Bio. 2024, 28: 101245.
[8 Near-infrared light-triggered MXene nanocomposite for tumor-specific mild photothermal-enhanced chemodynamic therapy. Advanced Functional Materials. 2024, 34: 202405124.
[9 Cell expansion waves orchestrate tissue elongation with epithelial flattening. Nature Communications. 2024, 15: 3000.
[10 Biomimic “Gemini nanoimmunoregulators”orchestrated for boosted photoimmunotherapy by spatiotemporally modulating PD-L1 and tumor associated macrophages. Acta Pharmaceutica Sinica B. 2024, 14(3): 1345-1361.
[11 Cell membrane-based biomimetic technology for cancer phototherapy: mechanisms, recent advances and perspectives. Acta Biomaterialia. 2024, 174: 26-48.
[12 Activatable biomimetic raspberry-like nanoplatform enabled robust cascade therapy via spatiotemporal regulation of tumor immunogenicity and immunosuppression. Chemical Engineering Journal. 2024, 479: 147563.
[13 Multifunctional bismuth-based gold-crowned nanocomposites for synergistic/enhanced sonodynamic, NIR-II biowindow photoinduced, and chemotherapeutic cancer therapy. ACS Applied Materials and Interfaces. 2023, 15: 58041-58053.
[14 Hemolysin from Aeromonas hydrophila enhances thehost's serum enzyme activity and regulates transcriptional responses in the spleen of Cyprinus rubrofuscus. Ecotoxicology and Environmental Safety. 2023, 263: 115375.
[15 Endoplasmic reticulum-mitochondrial calcium transport contributes to soft extracellular matrix-triggered mitochondrial dynamics and mitophagy in breast carcinoma cells. Acta Biomaterialia. 2023, 169: 192-208.
[16 Biomimetic nano-immunoactivator via ionic metabolic modulation for strengthened NIR-II photothermal immunotherapy. Small. 2023, 19: 2304370.
[17 Nesprin-1/2 mediates breast cancer cell pore migration via nucleus deformation. European Physical Journal-Special Topics. 2023, 232: 2739-2749.
[18 NIR/pH-triggered chemo-phototherapy by aptamer-functionalized DNA origami nanovehicle for tumor-targeted delivery. Journal of Nanobiotechnology. 2023, 21: 186.
[19 Enhanced ferroptosis therapy with a “nano-destructor” by disrupting intracellular redox and iron homeostasis. Nano Today. 2023, 51: 101896.
[20 Stimulus-detonated biomimetic “nanobomb” with controlled release of HSP90 inhibitor to disrupt mitochondrial function for synergistic gas and photothermal therapy. Advanced Healthcare Materials. 2023, 12: 2300945.
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