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陈填烽
2023-05-11 07:12
  • 陈填烽
  • 陈填烽 - 教授,博士生导师-暨南大学-化学与材料学院-个人资料

近期热点

资料介绍

个人简历


01/2018至今,暨南大学附属第一医院纳米诊疗研究所所长、教授(博导)\r
12/2016至今,暨南大学化学与材料学院副院长、教授(博导)\r
10/2010至今,暨南大学化学系教授(博士生导师)\r
09/2015至今,广东省纳米化学创新药物工程技术研究中心主任\r
12/2008-09/2010,暨南大学化学系副教授(博士生导师)\r
08/2008-08/2009,香港中文大学生物系博士后研究员\r
08/2005–06/2008,香港中文大学生物系博士(化学生物学、细胞生物学)\r
09/2003–06/2005,暨南大学化学系硕士(生物无机化学)\r
09/1999–06/2003,暨南大学化学系学士(应用化学)

研究领域


"""""陈填烽教授一直致力于肿瘤靶向化学创新药物与诊疗应用的研究,获得万人计划青年拔尖人才项目、国家863计划、国家自然科学基金项目、国家科技支撑计划及广东省自然科学杰出青年基金等项目的资助。先后入选了教育部新世纪优秀人才支持计划(2010)、广东省高校“千百十工程”省级培养人才(2012),国家863青年科学家(2013)、广东省杰出青年基金项目(2013)、霍英东青年教师奖(2014)及万人计划青年拔尖人才(2015)。近五年以通讯作者在Cell子刊Matter、Science Advances、JACS、Angew Chem Int Ed、Adv Funct Mater及ACS Nano等本领域主流杂志发表论文超过250篇,其中IF>10有45篇,封面论文38篇,h-index 58,申报中国专利60项,授权美国专利1项,实现技术成果转化12项。担任第六届国际硒研讨会主席、第一届国际富硒产业联盟大会主席。以第一完成人获得2020年中国抗癌协会科技二等奖、2018年中华医学科技奖青年科技奖、2018广东省自然科学二等奖、2017广东省科技进步三等奖、2017中国产学研创新成果奖、2015广州市科技二等奖、2016首届中国创新大赛优秀奖、2014第三届金博奖及2012第七届国际发明展览会银奖,推动了硒化学在生物医药领域的应用。"

近期论文


Weiqiang Lin#, Hongxing Liu#, Lingwu Chen, Junxing Chen, Dong Zhang, Qingqing Cheng, Fang Yang, Qinsong Zeng*, Tianfeng Chen*. Pre-clinical MRI-guided intravesical instillation theranosis of bladder cancer by tumor-selective oxygen nanogenerator, Nano Today, 2021, 38, 101124.\r
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Lizhen He#, Guanning Huang#, Hongxing Liu, Chengcheng Sang, Xinxin Liu, Tianfeng Chen*. Highly bioactive zeolitic imidazolate framework-capped nanotherapeutics for efficient reversal of reperfusion-induced injury in ischemic stroke. Science Advances, 2020; 6: eaay9751\r
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Wei Huang, Lizhen He, Jiang Ouyang, Qi Chen, Chuang Liu, Wei Tao*, and Tianfeng Chen*. Triangle-Shaped Tellurium Nanostars Potentiate Radiotherapy by Boosting Checkpoint Blockade Immunotherapy. Matter, 2020, 3, 1725-1753.\r
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Zhongyang Zhang, Zhongmin Tang, Nika Farokhzad, Tianfeng Chen,* and Wei Tao*. Sensitive, Rapid, Low-Cost, and Multiplexed COVID-19 Monitoring by the Wireless Telemedicine Platform. Matter, 2020, 3, 1818–1831.\r
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Leung Chan#, Xiaodan Chen#, Pan Gao, Jun Xie, Zhongyang Zhang, Jianfu Zhao, Tianfeng Chen*. Coordination-Driven Enhancement of Radiosensitization by Black Phosphorus via Regulating Tumor Metabolism. ACS Nano, 2021, 15, 2, 3047\r
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Jiang Ouyang, Ling Zhang, Leijiao Li, Zhongmin Tang, Xiaoyuan Ji, Chan Feng, Na Tao, Na Kong, Tianfeng Chen*, You-Nian Liu*, Wei Tao*. Cryogenic Exfoliation of 2D Stanene Nanosheets for Cancer Theranostics. Nano-Micro Letters, 2021, 13:90.\r
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Ting Liu#, Ligeng Xu#, Lizhen He, Jianfu Zhao, Zehang Zhang, Qi Chen, Tianfeng Chen*. Selenium Nanoparticles Regulates Selenoprotein to Boost Cytokine-Induced Killer Cells-Based Cancer Immunotherapy. Nano Today, 2020, 35, 100975.\r
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Zhuo Wang‡, Lizhen He‡, Bingqing Liu, Li-Peng Zhou, Li-Xuan Cai, Shao-Jun Hu, Xiao-Zhen Li, Zhikai Li, Tianfeng Chen,* Xiaopeng Li,* Qing-Fu Sun*. Coordination-Assembled Water-Soluble Anionic Lanthanide Organic Polyhedra for Luminescent Labeling and Magnetic Resonance Imaging. J. Am. Chem. Soc., 2020, 142, 38, 16409–16419. \r
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Hao-Yan Yin, Jiu-Jiao Gao, Xuemin Chen, Bin Ma, Zi-Shu Yang, Juan Tang, Bing-Wu Wang, Tianfeng Chen*, Chu Wang*, Song Gao, Jun-Long Zhang*. A Gallium(III) Complex that Engages Protein Disulfide Isomerase A3 (PDIA3) as an Anticancer Target. Angew Chem Int Edit, 2020, 59, 20147-20153.\r
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Liu, Chang; Lai, Haoqiang; Chen, Tianfeng*. Boosting Natural Killer Cell-Based Cancer Immunotherapy with Selenocystine/Transforming Growth Factor-Beta Inhibitor-Encapsulated Nanoemulsion. ACS Nano, 2020, 14, 9, 11067.\r
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Jing Wang, Yanzhou Chang, Hui Luo, Wenxiao Jiang, Ligeng Xu, Tianfeng Chen*, Xueqiong Zhu*. Designing Immunogenic Nanotherapeutics for Photothermal-Triggered Immunotherapy Involving Reprogramming Immunosuppression and Activating Systemic Antitumor Responses. Biomaterials, 2020, 120153.\r
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Hongxing Liu†, Chaoming Mei†, Xuanru Deng, Weiqiang Lin, Lizhen He, Tianfeng Chen*. Rapid visualizing and pathological grading of bladder tumor tissues by simple nanodiagnostics, Biomaterials, 2021, 264, 120434.\r
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Zhennan Zhao, Pan Gao, Li M* and Tianfeng Chen*. A highly X-ray sensitive iridium prodrug for visualized tumor radiochemotherapy. Chemical Science, 2020, 11, 3780 - 3789\r
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JuanjuanLi, TianfengChen*. Transition metal complexes as photosensitizers for integrated cancer theranostic applications, Coordination Chemistry Reviews, 2020, 418, 213355.\r
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Yuanyuan You, Zhennan Zhao, Lizhen He, Zhibo Sun, Dong Zhang, Changzheng Shi, Qingqing Cheng, Yiyong Liu, Liangping Luo, Tianfeng Chen*. Long-term Oxygen Storage Nanosystem for Near-Infrared Light-Triggered Oxygen Supplies to Antagonize Hypoxia-induced Therapeutic Resistance in Nasopharyngeal Carcinoma. Advanced Functional Materials. 2020, 2002369.\r
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Yanyu Huang†, Yuanting Fu†, Mengting Li, Dawei Jiang, Christopher J. Kutyreff, Jonathan W. Engle, Xiaoli Lan, Weibo Cai*, Tianfeng Chen*. Chirality-driven transportation and oxidation prevention by chiral selenium nanoparticles. Angew Chem Int Edit, 2020, 59, 4406-4414. Frontispiece\r
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Yanhong Duo#, Yanyu Huang#, Weiyuan Liang#, Riming Yuan, Yang Li, Tianfeng Chen*, Han Zhang*. Ultraeffective Cancer Therapy with an Antimonene-Based X-Ray Radiosensitizer. Advanced Functional Materials. 2019, 1906010.\r
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Hongxing Liu, Weiqiang Lin, Lizhen He*, Tianfeng Chen*. Radiosensitive Core/Satellite Ternary Heteronanostructure for Multimodal Imaging-Guided Synergistic Cancer Radiotherapy. Biomaterials, 2020, 119545.\r
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Chengli Dai †, ZhengTang †, Xiaoling Li, Tianfeng Chen*. High-pressure homogenization and tailoring of size-tunable Ganoderma lucidum spore oil nanosystem for enhanced anticancer therapy. Chemical Engineering Journal, 2020, 406, 127125\r
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Haoqiang Lai, Xiaobin Zhang, Zhenhuan Song, Zhongwen Yuan, Lizhen He*, Tianfeng Chen*. Facile synthesis of antioxidative nanotherapeutics using a microwave for efficient reversal of cisplatin-induced nephrotoxicity. Chemical Engineering Journal, 2020, 391, 123563 \r
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Haoqiang Lai, Delong Zeng, Chang Liu, Qi Zhang, and Tianfeng Chen*. Selenium-containing Ruthenium Complex synergizes with Natural Killer Cells to Enhance Immunotherapy Against Prostate Cancer via Activating TRAIL/FasL Signaling, Biomaterials, 2019, 219, 119377\r
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Yi Hu#, Ting Liu#, Jingxia Li#, Fengyi Mai, Jiawei Li, Yan Chen, Yanyun Jing, Xin Dong, Li Lin, Junyi He, Yan Xu, Changliang Shan, Jianlei Hao, Zhinan Yin, Tianfeng Chen*, Yangzhe Wu*. Selenium nanoparticles potentiate γδ T cell anti-tumor cytotoxicity by upregulation of tubulin-a acetylation, Biomaterials, 2019, 119397.\r
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Lizhen He, Tianqi Nie, Xiaojun Xia, Ting Liu, Yanyu Huang, Xiaojuan Wang, Tianfeng Chen*. Designing Bioinspired 2D MoSe2 Nanosheet for Efficient Photothermal-Triggered Cancer Immunotherapy with Reprogramming Tumor-associated Macrophages. Advanced Functional Materials. 2019, 1901240. (Back Cover)\r
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Chengli Dai, Lizhen He, Bin Ma, Tianfeng Chen*. Facile Nanolization Strategy for Therapeutic Ganoderma Lucidum Spore Oil to Achieve Enhanced Protection against Radiation-Induced Heart Disease, Small, 2019, 1902642.\r
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Pengju Feng,* Guojian Ma, Xiaoguang Chen, Xing Wu, Ling Lin, Peng Liu and Tianfeng Chen* Electro-oxidative and Regioselective C-H Azolation of Phenol and Aniline Derivatives, Angew Chem Int Edit, 2019, 58, 8400-8404.\r
Chan, Leung ; Gao, Pan ; Zhou, Wenhua ; Mei, Chaoming ; Huang, Yanyu; Yu, Xue-Feng*; Chu, Paul; Chen, Tianfeng*. Sequentially Triggered Delivery System of Black Phosphorus Quantum Dots with Surface Charge Switching Ability for Precise Tumor Radiosensitization. ACS Nano, 2018, 12, 12401–12415.\r
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Chaoming Mei, Ni Wang, Xueqiong Zhu, Ka-Hing Wong, Tianfeng Chen*. Photothermal-controlled Nanotubes with Surface Charge Flipping Ability for Precise Synergistic Therapy of Triple-negative Breast Cancer. Advanced Functional Materials. 2018, 1805225.\r
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Lizhen He, Tianfeng Chen*, Yuanyuan You, Hao Hu, Wenjie Zheng, Wai-Lun Kwong, Taotao Zou and Chi-Ming Che*. A Cancer-Targeted Nanosystem for Delivery of Anti-Cancer Gold(III) Complexes: Enhanced Selectivity and Apoptosis-Inducing Efficacy of Gold(III) Porphyrin. Angew Chem Int Edit, 2014, 53(46), 12532-12536.\r
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Wen Liu, Xiaoling Li, Yum-Shing Wong, Wenjie Zheng*, Yibo Zhang, Wenqiang Cao, Chen Tianfeng*. Selenium nanoparticles as a carrier of 5-Fluorouracil to achieve anticancer synergism. ACS Nano, 2012, 6 (8), 6578–6591.\r
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Yanzhou Chang, Lizhen He, Zhibin Li, Lilan Zeng, Zhenhuan Song, Penghui Li, Leung Chan, Yuanyuan You, Xue-Feng Yu*, Paul K Chu, and Tianfeng Chen*. Designing Core-Shell Gold and Selenium Nanocomposites for Cancer Radiochemotherapy. ACS Nano, 2017, 11(5):4848-4858.\r
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Lizhen He, Yanyu Huang, Huili Zhu, Guanhua Pang, Wenjie Zheng, Yum-Shing Wong, Tianfeng Chen*. Cancer-targeted Monodisperse Mesoporous Silica Nanoparticles as Carrier of Ruthenium Polypyridyl Complexes to Enhance Theranostic Effects. Advanced Functional Materials. 2014, 24(19), 2754–2763. (封面文章)\r
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Ting Liu, Lanhai Lai, Zhenhuan Song, Tianfeng Chen*. A Sequentially triggered nanosystem for precise drug delivery and simultaneous inhibition of cancer growth, migration and invasion. Advanced Functional Materials. 2016, 26, 7775–7790. (Inside Cover)\r
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Yuanyuan You, Lizhen He, Bin Ma, Tianfeng Chen*. High-drug loading mesoporous silica nanorods with reduced toxicity for precise cancer therapy against nasopharyngeal carcinoma. Advanced Functional Materials. 2017, 27, 1703313.\r
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Wei Huang, Yanyu Huang, Yuanyuan You, Tianqi Nie, Tianfeng Chen*. High-yield synthesis of multifunctional tellurium nanorods to achieve simultaneous chemophotothermal combination cancer therapy. Advanced Functional Materials. 2017, 27, 1701388.\r
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Yanyu Huang, Chaoming Mei, Yiqiao Tian, Tianqi Nie, Zhuang Liu*, Tianfeng Chen*. Bioinspired Tumor-homing Nanosystem for Precise Cancer Therapy by Reprogramming Tumor-associated Macrophages. NPG Asia Materials. 2018, 10, 1002–1015.\r
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Lan Zheng, Chang’e Li, Xiaoting Huang, Xueran Lin, Weiqiang Lin, Fang Yang*, Tianfeng Chen*. Thermosensitive Hydrogels for Sustained-release of Sorafenib and Selenium Nanoparticles for Localized Synergistic Chemoradiotherapy. Biomaterials, 2019, 216, 119220. \r
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Zhennan Zhao#, Xiang Zhang#, Chang-e Li and Tianfeng Chen *. Designing Luminescent Ruthenium Prodrug for Precise Cancer Therapy and Rapid Clinical Diagnosis. Biomaterials, 2019, 192, 579–589.

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