姓名:冯茜
性别:女
出生年月:1991年8月
籍贯:四川宣汉
职称职务:博士、副教授、博士生导师、硕士生导师
邮箱:qianfeng@cqu.edu.cn
研究领域:生物材料、再生医学
博士研究生招生专业:生物医学工程
硕士研究生招生专业:生物医学工程
个人简介
2013年本科毕业于华东理工大学高分子材料与工程专业;2017年博士毕业于香港中文大学生物医学工程专业;2018-2020年任福建师范大学化学与材料学院副研究员;2020年9月加入重庆大学生物工程学院任副教授。
主要从事生物材料,尤其是水凝胶材料,的研发及其在组织工程与再生医学中应用的研究。以第一作者/通讯作者身份,在Biomaterials、ACS Central Science、Acta Biomaterialia、NPG Asia Materials等杂志发表论文10余篇,其中1篇入选ESI高倍引论文。拥有美国授权专利1项,中国授权专利1项。主持有国家自然科学基金1项,省重点项目1项。
热忱欢迎化学、材料学、生物学、药学、医学等相关学科学生报考研究生。
个人网址:https://www.x-mol.com/people/qianfengcqu
发表论文:
(1) Zhang, K., Wan, Z., Jiang, H., Xiao, X., Feng, Q.*(共同通讯), Meng, Y.*, Yu, Y.*. Dimer targeting peptide mediated precise and controllable drug delivery by upconversion nanocarriers for breast cancer therapy. Materials and Design, 2021, 203: 109597.
(2) +Huang, Y., +Feng, Q.(共同第一作者), Jiang, H., Zhou, W., Chen, J., Gao, J., Wang, K., Wan, Xi., Yu, Y.. Mimicking the endometrial cancer tumor microenvironment to reprogram tumor-associated macrophages in disintegrable supramolecular gelatin hydrogel, International Journal of Nanomedicine, 2020, 15: 4625–4637.
(3) Feng, Q.; Xu, J.; Zhang, K.; Yao, H.; Zheng, N.; Zheng, L.; Wang, J.; Wei, K.; Xiao, X.; Qin, L.; *Bian, L. Dynamic and cell-infiltratable hydrogels as injectable carrier of therapeutic cells and drugs for treating challenging bone defects. ACS Central Science, 2019, 5: 440-450.
(4) +Xu, J.; +Feng, Q.; (共同第一作者) Lin, S.; Yuan, W.; Li, R.; Li, J.; Wei, K.; Chen, X.; Zhang, K.; Yang, Y.; Wu, T.; Wang, B.; Zhu, M.; Guo, R.; Li, G.; *Bian, L. Injectable stem cell-laden supramolecular hydrogels enhance in situ osteochondral regeneration via the sustained co-delivery of hydrophilic and hydrophobic chondrogenic molecules. Biomaterials, 2019,210:51-61.
(5) +Kang, H.; +Kim, M.; +Feng, Q. (共同第一作者); Lin, S,; Wei, K.; Li, R.; Choi, C. J.; Kim, T.; Li, G.; *Oh, J. M.; *Bian, L. Nanolayered hybrid mediated synergistic co-delivery of ligand and ligation activator for inducing differentiation and tissue healing. Biomaterials, 2017, 149: 12-28.
(6) Feng, Q.; Wei, K.; Zhang, K.; Yang B.; Tian F.; Wang, G.; *Bian, L. One-pot Solvent Exchange Preparation of Non-swellable, Thermoplastic, Stretchable, and Adhesive Supramolecular Hydrogels Based on Dual Synergistic Physical Crosslinking. NPG Asia Materials, 2017, 10: e455.
(7) Feng, Q.; Lin, S.; Zhang, K.; Dong, C.; Wu, T.; Huang, H.; Yan, X.; Zhang, L.; Li, G.; *Bian, L. Sulfated hyaluronic acid hydrogels with retarded degradation and enhanced growth factor retention promote hMSC chondrogenesis and articular cartilage integrity with reduced hypertrophy. Acta Biomaterialia, 2017, 53: 314-329.
(8) Feng, Q.; Wei, K.; Lin, S.; Xu, Z.; Sun, Y.; Shi, P.; Li, G.; *Bian, L. Mechanically resilient, bioadhesive, and injectable supramolecular gelatin hydrogels crosslinked by weak host-guest interactions assist cell infiltration and in situ tissue regeneration. Biomaterials. 2016, 101: 217-28.
(9) +Zhu, M.; +Feng, Q. (+共同第一作者); *Bian, L. Differential effect of hypoxia on human mesenchymal stem cell chondrogenesis and hypertrophy in hyaluronic acid hydrogels. Acta Biomaterialia.2014, 10:1333-1340.
(10) Feng, Q.; Zhu, M.; Wei, K.; *Bian, L. Cell-mediated degradation regulates human mesenchymal stem Cell chondrogenesis and hypertrophy in MMP-sensitive hyaluronic acid hydrogels. PLoS ONE.2014, 9: e99587.
科研项目:
(1) 国家自然科学基金青年项目,用于软骨及软骨下骨缺损修复的双层超分子水凝胶研究,31900963,2020-01至2022-12,25万元,在研,主持
(2) 福建省第五轮卫生教育联合攻关计划,二次注射成型水凝胶用于骨关节炎中组织缺损修复的关键技术研究,2019-WJ-22,2019-2022,15万,在研,主持