学术带头人

葛翠翠 优青

时间:2019-04-07来源:必赢国际437官方点击:2902



葛翠翠,教授、博士生导师

电 话:0512-65882263; 邮 箱:ccge@suda.edu.cn

通讯地址:苏州工业园区仁爱路199号, 邮编215123



个人简历:

苏州大学医学部放射医学与防护学院特聘教授、博士生导师,国家优秀青年科学基金获得者。2005年于安徽师范大学获得理学学士学位,2011年于中科院高能物理研究所获得理学博士学位。2012年加入苏州大学医学部放射医学与防护学院,2005-2006年美国食品药品监督管理局访问学者。202010月,被聘为特聘教授。近年来致力于纳米材料的环境健康效应及安全应用,以通讯/第一作者在相关领域重要期刊发表论文40余篇,包括Nat CommunProc Natl Acad SciNano TodayAdv Funct MaterACS Nano等,论文被引近两千次,单篇最高总引569次,2篇入选ESI高被引论文。


研究方向:

1、纳米-蛋白质界面作用及其生物意义:通过探索纳米-蛋白质界面作用的规律及其对功能蛋白质构象功能的调控,准确揭示纳米材料的生物效应机制,开发纳米材料在蛋白质相关疾病治疗中的潜在应用。

2、纳米酶的活性调控及其生物医学应用:基于纳米酶的催化机制及环境选择性,探索纳米酶的活性调控策略,发展纳米酶在氧化应激疾病治疗、肿瘤治疗、抗菌感染治疗中的潜在应用。


科研项目:

1.国家自然科学基金委优秀青年科学基金项目,纳米环境健康效应,2021-012023-1211575123120在研项目负责人

2.国家科学技术部国家重点基础研究发展计划,生物界面蛋白质冠主动精准调控与高效递送载体构建子课题2020YFA0700792020-092025-08132在研,子课题负责人

3.江苏省高等学校自然科学研究重大项目,19KJA610003纳米酶在放疗联合维生素C抗肿瘤治疗中的潜在应用,2019-092022-08结题,项目负责人

4. 国家自然科学基金面上项目,11575124,先进同步辐射技术用于金纳米材料与典型蛋白质相互作用及相关生物效应研究,2016-012019-12结题,项目负责人


代表性论文:

1.Ge Fang; Ruonan Kang; Yu Chong; Liming Wang; Chuanqiang Wu; Cuicui Ge*; MOF-based DNA Hydrolases Optimized by Atom Engineering for the Removal of Antibiotic-Resistant Genes from Aquatic Environment, Applied Catalysis B-environmental, 2023, 320: 121931.

2.Ge Fang; Ruonan Kang; Shuwei Cai; Cuicui Ge*;Insight into nanozymes for their environmental applications as antimicrobial and antifouling agents: Progress, challenges and prospects, Nano Today, 2023, 48:101755.

3.Chong, Yu; Liu, Qiang; Ge, Cuicui*; Advances in oxidase-mimicking nanozymes: Classification, activity regulation and biomedical applications, Nano Today, 2021, 37:101076.

4.Jin Wang; Xin Tian; Jie Zhang; Lirong Tan; Nan Ouyang; Beibei Jia; Chunying Chen; Cuicui Ge*; Jianxiang Li. Postchronic Single-Walled Carbon Nanotube Exposure Causes Irreversible Malignant Transformation of Human Bronchial Epithelial Cells through DNA Methylation Changes, ACS Nano 2021, 15, 7094−7104.

5.Cai, Tingting; Fang, Ge; Tian, Xin; Yin, Jun-Jie; Chen, Chunying; Ge, Cuicui*; Optimization of antibacterial efficacy of noble-metal-based core-shell nanostructures and effect of natural organic matter, ACS Nano, 2019, 13(11): 12694-12702.   

6.Wu, Renfei#; Chong, Yu#; Fang, Ge; Jiang, Xiumei; Pan, Yue; Chen, Chunying; Yin, Jun-Jie; Ge, Cuicui*; Synthesis of Pt hollow nanodendrites with enhanced peroxidase-like activity against bacterial infections: implication for wound healing, Advanced Functional Materials, 2018, 28(28): 1801484.    

7.Fang, Ge#; Li, Weifeng#; Shen, Xiaomei; Perez-Aguilar, Jose Manuel; Chong, Yu; Gao, Xingfa; Chai, Zhifang; Chen, Chunying*; Ge, Cuicui*; Zhou, Ruhong*; Differential Pd-nanocrystal facets demonstrate distinct antibacterial activity against Gram-positive and Gram-negative bacteria, Nature Communications, 2018, 9: 129.  

8.Chong, Yu#; Dai, Xing#; Fang, Ge; Wu, Renfei; Zhao, Lin; Ma, Xiaochuan; Tian, Xin; Lee, Sangyun; Zhang, Chao; Chen, Chunying; Chai, Zhifang; Ge, Cuicui*; Zhou, Ruhong*; Palladium concave nanocrystals with high-index facets accelerate ascorbate oxidation in cancer treatment, Nature Communications, 2018, 9: 4861.   

9.Tian, Xin#; Yang, Zaixing#; Duan, Guangxin#; Wu, Anqing; Gu, Zonglin; Zhang, Leili; Chen, Chunying; Chai, Zhifang; Ge, Cuicui*; Zhou, Ruhong*; Graphene oxide nanosheets retard cellular migration via disruption of actin cytoskeleton., Small, 2017, 13(3): 1602133.   

10.Cheng, Xiaju#; Yong, Yuan#; Dai, Yiheng; Song, Xin; Yang, Gang; Pan, Yue*; Ge, Cuicui*; Enhanced radiotherapy using bismuth sulfide nanoagents combined with photo-thermal treatment, Theranostics, 2017, 7(17): 4087-4098.