Extrusion Printed Silk Fibroin Scaffolds with Post-mineralized Calcium Phosphate as a Bone Structural Material

被引:6
|
作者
Shi, Ruya [1 ]
Cai, Xingxing [1 ]
He, Guanping [2 ]
Guan, Juan [1 ]
Liu, Yuzeng [2 ]
Lu, Hongyi [2 ]
Mao, Zhinan [1 ]
Li, Yan [1 ,3 ]
Guo, Hongbo [1 ,3 ]
Hai, Yong [2 ]
机构
[1] Beihang Univ, Sch Mat Sci & Engn, Beijing 100083, Peoples R China
[2] Capital Med Univ, Affiliated Beijing Chaoyang Hosp, Dept Orthoped, 8 Gongtinanlu, Beijing 100020, Peoples R China
[3] Beijing Adv Innovat Ctr Biomed Engn, Beijing 100083, Peoples R China
基金
北京市自然科学基金;
关键词
3D-printing; Structural biomaterial; Mineralization; Hybrid material; IN-VITRO; HYDROXYAPATITE; ALGINATE; MONETITE; HYDROGEL; BRUSHITE; CEMENTS;
D O I
10.18063/ijb.v8i4.596
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Artificial bone materials are of high demand due to the frequent occurrence of bone damage from trauma, disease, and ageing. Three-dimensional (3D) printing can tailor-make structures and implants based on biomaterial inks, rendering personalized bone medicine possible. Herein, we extrusion-printed 3D silk fibroin (SF) scaffolds using mixed inks from SF and sodium alginate (SA), and post-mineralized various calcium phosphates to make hybrid SF scaffolds. The effects of printing conditions and mineralization conditions on the mechanical properties of SF scaffolds were investigated. The SF scaffolds from similar to 10 wt% SF ink exhibited a compressive modulus of 240 kPa, which was elevated to similar to 1600 kPa after mineralization, showing a significant reinforcement effect. Importantly, the mineralized SF 3D scaffolds exhibited excellent MC3T3-E1 cell viability and promoted osteogenesis. The work demonstrates a convenient strategy to fabricate SF-based hybrid 3D scaffolds with bone-mimetic components and desirable mechanical properties for bone tissue engineering.
引用
收藏
页数:17
相关论文
共 50 条
  • [41] Biomimetic Calcium Phosphate Coated Macro-Microporous Poly(ε-caprolactone)/Silk Fibroin (PCL/SF) Scaffold for Bone Tissue Engineering
    Tumursukh, Nomin-Erdene
    Choi, Joo Hee
    Seo, Jin Sol
    Song, Youngeun
    Jeon, Gayeong
    Kim, Na Eun
    Song, Jeong Eun
    Khang, Gilson
    MACROMOLECULAR RESEARCH, 2022, 30 (11) : 766 - 775
  • [42] Biomimetic Calcium Phosphate Coated Macro-Microporous Poly(ε-caprolactone)/Silk Fibroin (PCL/SF) Scaffold for Bone Tissue Engineering
    Nomin-Erdene Tumursukh
    Joo Hee Choi
    Jin Sol Seo
    Youngeun Song
    Gayeong Jeon
    Na Eun Kim
    Jeong Eun Song
    Gilson Khang
    Macromolecular Research, 2022, 30 : 766 - 775
  • [43] Vancomycin-Loaded Silk Fibroin/Calcium Phosphate/Methylcellulose-Based In Situ Thermosensitive Hydrogel: A Potential Function for Bone Regeneration
    Phewchan, Premchirakorn
    Laoruengthana, Artit
    Chomchalao, Pratthana
    Lamlertthon, Supaporn
    Tiyaboonchai, Waree
    GELS, 2024, 10 (11)
  • [44] Effect of porosity and phase composition in 3D printed calcium phosphate scaffolds on bone tissue regeneration in vivo
    Raja, Naren
    Han, Shi Huan
    Cho, Minjoon
    Choi, Yeong-Jin
    Jin, Yuan-Zhe
    Park, Honghyun
    Lee, Jae Hyup
    Yun, Hui-suk
    Materials and Design, 2022, 219
  • [45] Evaluation of Bone Sialoprotein Coating of Three-Dimensional Printed Calcium Phosphate Scaffolds in a Calvarial Defect Model in Mice
    Baranowski, Andreas
    Klein, Anja
    Ritz, Ulrike
    Goetz, Hermann
    Mattyasovszky, Stefan G.
    Rommens, Pol M.
    Hofmann, Alexander
    MATERIALS, 2018, 11 (11):
  • [46] Effect of porosity and phase composition in 3D printed calcium phosphate scaffolds on bone tissue regeneration in vivo
    Raja, Naren
    Han, Shi Huan
    Cho, Minjoon
    Choi, Yeong-Jin
    Jin, Yuan-Zhe
    Park, Honghyun
    Lee, Jae Hyup
    Yun, Hui-suk
    MATERIALS & DESIGN, 2022, 219
  • [47] Repair of rabbit radial bone defects using bone morphogenetic protein-2 combined with 3D porous silk fibroin/-tricalcium phosphate hybrid scaffolds
    Song, Jaeyong
    Kim, Junhyung
    Woo, Heung-Myung
    Yoon, Byungil
    Park, Hyunjung
    Park, Chanhum
    Kang, Byung-Jae
    JOURNAL OF BIOMATERIALS SCIENCE-POLYMER EDITION, 2018, 29 (06) : 716 - 729
  • [48] Novel Extrusion-Microdrilling Approach to Fabricate Calcium Phosphate-Based Bioceramic Scaffolds Enabling Fast Bone Regeneration
    He, Fupo
    Lu, Teliang
    Fang, Xibo
    Feng, Songheng
    Feng, Shenglei
    Tian, Ye
    Li, Yanhui
    Zuo, Fei
    Deng, Xin
    Ye, Jiandong
    ACS APPLIED MATERIALS & INTERFACES, 2020, 12 (29) : 32340 - 32351
  • [49] Enhancing bone regeneration through 3D printed biphasic calcium phosphate scaffolds featuring graded pore sizes
    Wang, Yue
    Liu, Yang
    Chen, Shangsi
    Siu, Ming-Fung Francis
    Liu, Chao
    Bai, Jiaming
    Wang, Min
    BIOACTIVE MATERIALS, 2025, 46 : 21 - 36
  • [50] Ginger and Garlic Extracts Enhance Osteogenesis in 3D Printed Calcium Phosphate Bone Scaffolds with Bimodal Pore Distribution
    Bose, Susmita
    Banerjee, Dishary
    Vu, Ashley A.
    ACS APPLIED MATERIALS & INTERFACES, 2022, 14 (11) : 12964 - 12975