个人简介
陶晓军 ,1981年4月生, 湖北黄冈人, 博士,博士后,2011年博士毕业于北京协和医学院(清华大学医学部),湖南师范大学副教授,硕士生导师,Nanoscale Res Let,RSC Advances 等杂志审稿人,中国实验动物学会屏障医学专委会委员,中国中西医结合耳鼻喉科专业委员会健康科普专委会委员,湖南省药理学会肿瘤药理专业委员会委员,小分子靶向药物发现和创制湖南省重点实验纳米制剂方向主持人,主要研究肿瘤的靶向治疗、纳米制剂的定位释放研究,纳米中药制剂等,主持厅局级课题3项,以第一作者或通讯作者发表SCI论文13篇(其中1区1篇,2区8篇),中文核心期刊论文5篇。申请发明专利8项,授权4项。获湖北省科技进步奖二等奖,获评2019年湖南师范大学“利君-育人先锋奖”。 指导大学生创新项目多项,带教大学生以第一作者发表SCI论文 2篇(中科院2区),指导大学获得湖南省第十三届大学生“挑战杯”科技作品一等奖,并获评优秀指导教师,湖南省第九届“挑战杯”大学生创业大赛银奖,全国第十六届大学生“挑战杯”科技作品决赛二等奖。
研究领域
主要研究肿瘤的靶向治疗、纳米制剂的定位释放研究,纳米中药制剂等
近期论文
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Liujiang Song,Xiaojun Tao(并列一作), Li Lin, Chao Chen, Hui Yao, Guangchun He, Guangyang Zou, Zhong Cao, Shichao Yan, Lu Lu, Huimei Yi, Di Wu, Siyuan Tan, Wanxin Ouyang, Zhifei Dai and Xiyun Deng.CerasomalLovastation Nanohybrids for Efficient Inhibition of Triple-Negative Breast Cancer Stem Cells To Improve Therapeutic Efficacy.ACS Applied Materials & Interfaces. 2018,10,7022-7030,(IF:8.456,1区)
Yongqiang Zheng, Lingli Lu, Zhengli Yan, , Sufang Jiang, Shanyi Yang, Yingzi Zhang, Kangwei Xu, Chunlian He,Xiaojun Tao(通讯). The Study of mPEG-Icariin Nanoparticles for Treating Myocardial Ischemia. Artificial Cells, Nanomedicine and Biotechnology 2019, 47(1), 801-811. (IF:4.462, 2区).
Yao Chen, Di Wu, Wu Zhong, Shuwen Kuang, QianLuo, Liujiang Song, Lihua He, Xing Feng andXiaojun Tao(通讯) . Evaluation of the PEG Density in the PEGylated Chitosan Nanoparticles as a Drug Carrier for Curcumin and M itoxantrone. Nanomaterials. 2018, 8(7), 486-501. (IF : 4.034,2区).
Xiaojun Tao, Yongchao Xie, Ximin Qiu, Qiufang Zhang, Liming Yuan, Yi Wen, Min Li, Xiaoping Yang, Ting Tao, MinghuiXie, Yanwei,Qin Yi Wang, Xing Feng.Cholesterol-modified Amino-pullulan Nanoparticles as a Drug Carrier: Comparative Study of Cholesterol-modified Carboxyethyl Pullulan and Pullulan Nanoparticles. Nanomaterials2016, 6(9), 165-180. (IF:4.034,2区)
Xiaojun Tao#, Ting Tao#, Yi Wen, Jiajin Yi, Lihua He, Zixuan Huang, Yu Nie, Xiaoyan Yao, Yingying Wang, Chunlian He,Xiaoping Yang*. Novel delivery of mitoxantrone with hydrophobically modified pullulan nanoparticles to inhibit bladder cancer cell and the effect of nano-drug size on inhibition efficiency. Nanoscale Research letter. 2018,13,345-357. (IF:3.159, 2区)