Journal of Inorganic Materials, Volume. 37, Issue 10, 1116(2022)
[2] LIU J, GAO C, FENG P et al. Selective laser sintering of
[3] LIU J, SHEN X, TANG S et al. Improvement of rBMSCs responses to poly(propylene carbonate) based biomaterial through incorporation of nanolaponite and surface treatment using sodium hydroxide[J]. ACS Biomaterials Science and Engineering, 329-339(2020).
[4] ZHANG Y H, CHEN M J, DAI Z B et al. Sustained protein therapeutics enabled by self-healing nanocomposite hydrogels for non-invasive bone regeneration[J]. J. Biomaterials Science, 8, 682-693(2020).
[8] GAO W, SUN L, ZHANG Z et al. Progress, preparation, characterization and evaluation of biomass-based siliconcontaining composite scaffolds for bone repair[J]. Chemical Industry and Engineering Progress, 4595-4605(2019).
[9] DONG Q S, YANG L, JIANG H Q et al. 3D-cubic interconnected porous Mg-based scaffolds for bone repair[J]. Journal of Magnesium and Alloys, 1336-1345(2021).
[12] LIU F H. Synthesis of bioceramic scaffolds for bone tissue engineering by rapid prototyping technique[J]. Journal of Sol Gel Science & Technology, 704-710(2012).
[23] CHEN Y, WANG X, BING M et al. 3D-printed bioactive Ca3SiO5 bone cement scaffolds with nano surface structure for bone regeneration[J]. ACS Applied Materials & Interfaces, 5757(2017).
Get Citation
Copy Citation Text
Hang ZHANG, Kunyuan HAN, Lanlan DONG, Xiang LI.
Category: RESEARCH ARTICLE
Received: Dec. 7, 2021
Accepted: --
Published Online: Jan. 12, 2023
The Author Email: Xiang LI (xiangliwj@sjtu.edu.cn)