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Qian Feng
Update  :  2020-10-28     Read  :  

【TITLE & POSITION】Associate Professor

【ACADEMIC APPOINTMENTS】Member of Chinese Society for Biomaterials

【CONTACT INFORMATION】E-mail: qianfeng@cqu.edu.cn;

Website: https://www.x-mol.com/people/qianfengcqu.

【PERSONAL PROFILE

Dr. Feng graduated from the Chinese University of Hong Kong (Ph.D. in Biomedical Engineering, 2017.11). From 2018.09 to 2020.08, she was working in College of Chemistry and Materials Science, Fujian Normal University. Then, She joined Chongqing University (2020.09) to carry out research work. She has presided 1 Projects supported National Natural Science Foundation of China (NSFC), and 1 Projects supported by Fujian Province. She has published more than 20 papers in journals such as ACS Central Science, Biomaterials, Acta Biomaterialia, etc. M Moreover, he/she has applied and obtained 2 patents of inventions. Current courses taught by Dr. Feng include Structure and function of biomacromolecules, etc.

【RESEARCH INTERESTS】

1. Novel biomaterials design and application

2. Novel conductive hydrogels and flexible sensors

【REPRESENTATIVE PUBLICATIONS】

1. Zhang, K., Wan, Z., Jiang, H., Xiao, X., Feng, Q.*, Meng, Y.*, Yu, Y.*. Dimer targeting peptide mediated precise and controllable drug delivery by upconversion nanocarriers for breast cancer therapy. Materials and Design, 2021,

2. 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.

3. 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.

4. 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.

5. 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.


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