Advanced Fiber Materials, Volume. 6, Issue 6, 00457(2024)
Remodeling Electrophysiological Microenvironment for Promoting Bone Defect Repair via Electret Hybrid Electrospun Fibrous Mat
[1] [1] Huang X, Lou Y, Duan Y, Liu H, Tian J, Shen Y, Wei X. Biomaterial scaffolds in maxillofacial bone tissue engineering: A review of recent advances. Bioact Mater. 2024;33:129.
[19] [19] Wang L, Pang Y, Tang Y, Wang X, Zhang D, Zhang X, Yu Y, Yang X, Cai Q. A biomimetic piezoelectric scaffold with sustained Mg2+ release promotes neurogenic and angiogenic differentiation for enhanced bone regeneration. Bioact Mater. 2023;25:399.
[33] [33] Fu Z, Cui J, Zhao B, Shen SGF, Lin K. An overview of polyester/hydroxyapatite composites for bone tissue repairing. J Orthop Transl. 2021;28:118.
[45] [45] Zhang D, Wu X, Chen J, Lin K. The development of collagen based composite scaffolds for bone regeneration. Bioact Mater. 2018;3:129.
[49] [49] Ferrigno B, Bordett R, Duraisamy N, Moskow J, Arul MR, Rudraiah S, Nukavarapu SP, Vella AT, Kumbar SG. Bioactive polymeric materials and electrical stimulation strategies for musculoskeletal tissue repair and regeneration. Bioact Mater. 2020;5:468.
Get Citation
Copy Citation Text
Jinjie Cui, Bin Yu, Dejian Li, Zeyu Fu, Xiuyi Yang, Lingyong Jiang, Xudong Wang, Kaili Lin. Remodeling Electrophysiological Microenvironment for Promoting Bone Defect Repair via Electret Hybrid Electrospun Fibrous Mat[J]. Advanced Fiber Materials, 2024, 6(6): 00457
Category: Research Articles
Received: Jan. 20, 2024
Accepted: Jun. 16, 2024
Published Online: Jan. 23, 2025
The Author Email: Lingyong Jiang (jianglingyong@sjtu.edu.cn), Xudong Wang (xudongwang70@hotmail.com), Kaili Lin (lklecnu@aliyun.com)