师资队伍

师资队伍

罗韬研究组

罗韬

研究员、博士生导师

  • 邮箱:luotao@ncu.edu.cn

  • 地址:前湖校区南院科创楼217

  • 研究方向:不育症发病机制及其诊疗体系开发

个人简介
研究方向
研究组成员
代表性论文

南昌大学生物医学创新研究院PI,研究员,博士生导师。2012年毕业于华中农业大学获生物化学与分子生物学博士学位;德国柏林洪堡大学访问学者。现任中国药理学会生殖药理专业委员会常务委员、江西省生理科学会理事会理事等学术兼职。

多年来聚焦人类生殖健康和优生优育,从膜蛋白、蛋白质翻译后修饰、遗传变异以及环境污染等多方面、多因素闸明不育的发病机制并致力于不育的精准诊疗体系的构建以及出生缺陷的早筛和防控。主持完成多项课题,包括科技部重点研发专项子课题、中央引导地方专项课题、国家自然科学基金面上项目和青年项目、江西省重点项目等。相关工作发表在Adv Mater, Environ Sci Technol, Hum Reprod, J Hazard Mater, J Nanobiotechnology, Environ Chem Lett等杂志上(H-index: 23);授权专利10项。获鲁瓦扬国际研究奖提名、全国妇幼健康科学技术奖二等奖、江西省自然科学奖二等奖和三等奖以及江西医学科技奖二等奖。



课题组主要致力于生殖医学、生殖生物学、环境科学与材料学的交叉研究,研究离子通道、膜受体、单基因突变、蛋白质翻译后修饰以及环境因子调控生殖功能的机制及它们在不育症发病中的作用,并开发相应的精准诊疗体系。前期工作构建了高通量的精子离子通道检测平台,挖掘了多种生殖相关的新型赖氨酸酰基化修饰,开发了精子运动异常的遗传学诊疗体系,为不育相关疾病的精准诊疗提供了新的理论基础和潜在策略。具体研究方向如下:

1) 基于乳酸化、巴豆酰化、琥珀酰化等新型酰化修饰以及单基因突变的不育诊疗靶点的挖掘;

2) 新兴环境污染物(内分泌干扰物和纳米塑料)影响生殖健康的作用机制及干预策略开发;

3) 基于纳米材料和穿膜肽的靶向给药和AI药筛的不育干预策略的开发。



[1] Jiayi Wang, Yanfan Cui, Yujie Wang, Yixuan Li, Yuanqiao He, Tao Luo* (2025). Tributyl Phosphate Induced Male Reproductive Toxicity in Mice. Environmental Science & Technology (IF2024: 11.3, Nature index,中科院1Top), 18;59(6):3000-3012.

[2] Huan Xiong, Zhipeng He, Jing Ding, Jing Liu, Yue Xue, Min Ji, Na Hu, Kai Wu, Xi Deng, Zhaoxiao Liu, Tao Luo*, Xiaorong Deng* (2025). Long‑term exposure of polyethylene nanoplastics promotes colorectal tumorigenesis. Environmental Chemistry Letters (IF2024: 20.4, JCR Q1), 23, 931-936.

[3] Jiangnan Hu, Zhenglong Lian, Zhenzhen Weng, Zihao Xu, Jie Gao, Yuanyuan Liu, Tao Luo*, Xiaolei Wang* (2024). Intranasal Delivery of Near-infrared and Magnetic Dual-response Nanospheres to Rapidly Produce Antidepressant-like and Cognitive Enhancement Effects. Advanced Materials (IF2024: 26.8, Nature index, 中科院1Top), 36(31):e2405547.

[4] Yue Xue, Xiu Cheng, Zhang-Qiang Ma, Hou-Peng Wang, Chong Zhou, Jia Li, Da-Lei Zhang, Liao-Liao Hu, Yan-Fan Cui, Jian Huang, Tao Luo*, Li-Ping Zheng* (2024). Polystyrene nanoplastics induce apoptosis, autophagy, and steroidogenesis disruption in granulosa cells to reduce oocyte quality and fertility by inhibiting the PI3K/AKT pathway in female mice. Journal of Nanobiotechnology (IF2024: 12.6, 中科院1Top), 22:460.

[5] Ying Chen, Cheng Cheng, Wenqing Xu, Yanfan Cui, Yan Tian, Yulin Jiang, Yangyang Yuan, Ruirui Qian, Yujie Wang, Liping Zheng, Houyang Chen*, Tao Luo* (2024). Occurrence, toxicity and removal of polystyrene microplastics and nanoplastics in human sperm. Environmental Chemistry Letters (IF2024: 20.4, JCR Q1), 22: 2159-2165.

[6] Wenqing Xu, Yangyang Yuan, Yan Tian, Cheng Cheng, Ying Chen, Lianjie Zeng, Yuan Yuan, Dandan Li, Liping Zheng, Tao Luo* (2023). Oral exposure to polystyrene nanoplastics reduced male fertility and even caused male infertility by inducing testicular and sperm toxicities in mice. Journal of Hazardous Materials (IF2023: 12.2, 中科院1Top), 454: 131470.

[7] Lianjie Zeng, Chong Zhou, Wenqing Xu, Yupei Huang, Wencan Wang, Zhangqiang Ma, Jian Huang, Jia Li, Liaoliao Hu, Yue Xue, Tao Luo*, Liping Zheng* (2023). The ovarian-related effects of polystyrene nanoplastics on human ovarian granulosa cells and female mice. Ecotoxicology and Environmental Safety (IF2023: 6.2, 中科院1Top), 257:114941.

[8] Yuan Yuan, Yiwen Qin, Meng Wang, Wenqing Xu, Ying Chen, Liping Zheng, Wen Chen*, Tao Luo* (2022). Microplastics from agricultural plastic mulch films: A mini-review of their impacts on the animal reproductive system. Ecotoxicology and Environmental Safety (IF2022: 6.8, 中科院1Top), 244:114030.

[9] Houyang Chen, Liang Tang, Qing Hong, Tingting Pan, Shiqi Weng, Jie Sun, Qiongfang Wu, Xuhui Zeng, Yuxin Tang, Tao Luo* (2021). Testis developmental related gene 1 (TDRG1) encodes a progressive motility-associated protein in human spermatozoa. Human Reproduction (IF2021: 6.353, Nature index, 中科院1Top), 36(2): 283-292.  

[10] Yi-min Cheng, Zhen Peng, Hou-yang Chen, Ting-ting Pan, Xiao-nian Hu, Fang Wang, Tao Luo* (2020). Posttranslational lysine 2-hydroxyisobutyrylation of human sperm tail proteins affects motility. Human Reproduction (IF2020: 6.918, Nature index, 中科院1Top), 35(3): 494-503.