
|
|
姓名:邹颖 讲师,医学博士,硕士生导师 主要科研方向 周围神经再生、糖尿病周围神经病变、化疗周围神经病变 联系方式 通讯地址:广东省广州市番禺区大学城外环东路280号基础医学院517 邮编:510006,电话:020-39352189,邮箱:zouying@gdpu.edu.cn |
------------------------------------------------------------------------------------------------------------------------------------------------
简介
邹颖,医学博士,讲师,硕士研究生导师,主要科研方向为从蛋白翻译后修饰(如乙酰化、泛素化、乳酸化和巴豆酰化等)角度研究炎症调控、神经损伤和神经再生的发生机制和治疗策略。以第一作者/通讯作者(含共同)已在Advanced Science (2025, 2026), Journal of Advanced Research (2025),Advanced Healthcare Materials (2026), International Journal of Biological Macromolecules (2024), Cellular and Molecular Neurobiology (2023), Molecular Neurobiology (2022) 和Cell & Bioscience (2021) 等学术期刊发表SCI论文十余篇;先后主持国家自然科学基金青年基金、中国博士后基金面上项目、广东省医学科研基金青年基金和广东省自然科学基金面上项目等。教学方面主要承担本科生《人体解剖与组织胚胎学》和《组织学与胚胎学》课程。
教育背景及工作经历
2019-2022 南方医科大学人体解剖与组织胚胎学专业 医学博士
2022-2025 暨南大学生命科学技术学院 博士后、助理研究员
2025-至今 广东药科大学人体解剖学与组织胚胎学系 讲师
承担科研课题
1. 国家自然科学基金青年基金,82301546、2024/01-2026/12、30万,在研,主持。
2. 广东省自然科学基金面上项目,2025A1515010765、2025/01-2027/12、10万,在研,主持。
3. 广东省医学科学技术研究基金青年基金,A2024115、2024/07-2026/06、1万,在研,主持。
4. 中国博士后科学基金面上资助,2022M721351、2022/11-2024/07、8万,已结题,主持。
5. 暨南大学附属广东省第二人民医院博士后启动经费,2022BSGZ006、2022/7-2024/7、20万,已结题,主持。
6. 国家自然科学基金专项项目,32341004、2024/01-2025/12、200万,资助期满,参与。
科研论文
1. Ying Zou*; Mibu Cao*; Meiling Tai; Haoxian Zhou; Li Tao; Shu Wu; Kaiye Yang; Youliang Zhang; Yuanlong Ge; Hao Wang; Shengkang Luo; Zhenyu Ju. A Feedback Loop Driven by H4K12 Lactylation and HDAC3 in Macrophages Regulates Lactate‐Induced Collagen Synthesis in Fibroblasts Via the TGF‐β Signaling. Advanced Science, 2025, 12(13): e2411408.(*共同第一)IF: 14.1
2. Ying Zou; Shu Wu; Qian Hu; Haoxian Zhou; Yuanlong Ge; Zhenyu Ju; Shengkang Luo. Sonic hedgehog restrains the ubiquitin-dependent degradation of SP1 to inhibit neuronal/glial senescence associated phenotypes in chemotherapy-induced peripheral neuropathy via the TRIM25-CXCL13 axis. Journal of Advanced Research, 2025, 68(2025): 387-402.(第一作者)IF: 13
3. Shuyi Xu*; Ye He*; Ying Zou*; Mengyao Zhao; Jiaqi Zhang; Yizhou Xu; Jiale Cai; Xiongbo Luo; Xinrui Ma; Saini Wu; Yuling Huang; Xianghai Wang; Jiasong Guo. Schwann Cell Synthesized Cholesterol Orchestrates Peripheral Nerve Regeneration Via Structural and IGF1-Dependent Signaling Mechanisms. Advanced Science, 2026, 4: e20323. (*共同第一)IF: 14.1
4. Ying Zou*; Mibu Cao*; Li Tao*; Shu Wu; Haoxian Zhou; Youliang Zhang; Yiqing Chen; Yuanlong Ge; Zhenyu Ju; Shengkang Luo. Lactate triggers KAT8-mediated LTBP1 lactylation at lysine 752 to promote skin rejuvenation by inducing collagen synthesis in fibroblasts. International Journal of Biological Macromolecules, 2024, 277(3):134482. (*共同第一)IF: 8.1
5. Ying Zou; Shu Wu; Fei Wen; Yuanlong Ge; Shengkang Luo. PGC-1α Inhibits Schwann Cell Dedifferentiation and Delays Peripheral Nerve Degeneration by Targeting PON1. Cellular and Molecular Neurobiology, 2023, 43(7): 3767-3781. (第一作者兼共同通讯) IF: 4
6. Ying Zou. Establishment of an in vitro Differentiation and Dedifferentiation System of Rat Schwann Cells. Bio-protocol, 2023,13(5): e4631. (第一作者兼最后通讯)
7. JunYu Li; LingCong Zhou; YouLiang Zhang; MiaoBen Wu; HaoXian Zhou; Ying Zou*; YuanLong Ge*; ShengKang Luo*. Polyhydroxyalkanoate microspheres promote skin regeneration by activating the MYBL2 transcription factor. Advanced Healthcare Materials, 2026; 0: e05030. (*共同通讯) IF: 9.6
8. Ying Zou*; Jiaqi Zhang*; Jiawei Xu; Lanya Fu; Yizhou Xu; Xianghai Wang; Zhenlin Li; Lixin Zhu; Hao Sun; Hui Zheng; Jiasong Guo. SIRT6 inhibition delays peripheral nerve recovery by suppressing migration, phagocytosis and M2-polarization of macrophages. Cell & Bioscience, 2021,11(1): 210. (*共同第一)IF: 9.58
9. Ying Zou; Jiaqi Zhang; Jingmin Liu; Jiawei Xu; Lanya Fu; Xinrui Ma; Yizhou Xu; Shuyi Xu; Xianghai Wang; Jiasong Guo. SIRT6 Negatively Regulates Schwann Cells Dedifferentiation via Targeting c-Jun During Wallerian Degeneration After Peripheral Nerve Injury. Molecular Neurobiology, 2021, 59(1): 429-444. (第一作者)IF: 5.59
10. Mibu Cao; Li Tao; Youliang Zhang; Lingcong Zhou; Shu Wu; Haoxian Zhou; Yuanlong Ge*; Ying Zou*; Shengkang Luo. Increasing collagen synthesis in fibroblasts: The roles of PCL microspheres and the SAMD11–PLOD1 axis in skin rejuvenation. BBA-Molecular Cell Research, 2025, 1872(4):119931. (*共同通讯) IF: 5.011