A Simple Approach for an Eggshell-Based 3D-Printed Osteoinductive Multiphasic Calcium Phosphate Scaffold

被引:47
|
作者
Dadhich, Prabhash [1 ]
Das, Bodhisatwa [1 ]
Pal, Pallabi [1 ]
Srivas, Pavan K. [1 ]
Dutta, Joy [1 ]
Ray, Sabyasachi [2 ]
Dhara, Santanu [1 ]
机构
[1] Indian Inst Technol, SMST, Biomat & Tissue Engn Lab, Kharagpur 721302, W Bengal, India
[2] Midnapore Med Coll & Hosp, Dept Gynecol & Obstet, Midnapore, India
关键词
eggshells; multiphasic calcium phosphate; 3D printing; multiscalar porosity; osteoinduction; intramembranous ossification; METHYLENE PHOSPHONIC CHITOSAN; OSTEOBLAST PROGENITOR CELLS; ECTOPIC BONE-FORMATION; PROTEIN ADSORPTION; OSTEOCALCIN; HYDROXYAPATITE; REGENERATION; EXPRESSION; COMPOSITE; COLLAGEN;
D O I
10.1021/acsami.5b11981
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Natural origin bioceramics are widely used for bone grafts. In the present study, an eggshell-derived bioceramic scaffold is fabricated by 3D printing as a potential bone-graft analogue. The eggshell, a biological waste material, was mixed with a specific ratio of phosphoric acid and chitosan to form a precursor toward the fabrication of an osteoinductive multiphasic calcium phosphate scaffold via a coagulation-assisted extrusion and sintering for a multiscalar hierarchical porous structure with improved mechanical properties. Physicochemical characterization of the formed scaffolds was carried out for phase analysis, surface morphology, and mechanical properties. A similar scaffold was prepared using a chemically synthesized calcium phosphate powder that was compared with the natural origin one. The higher surface area associated with the interconnected porosity along with multiple phases of the natural origin scaffold facilitated higher cell adhesion and proliferation compared to the chemically synthesized one. Further, the natural origin scaffold displayed relatively higher cell differentiation activity, as is evident by protein and gene expression studies. On subcutaneous implantation for 30 days, promising vascular tissue in-growth was observed, circumventing a major foreign body response. Collagen-rich vascular extracellular matrix deposition and osteocalcin secretion indicated bonelike tissue formation. Finally, the eggshell-derived multiphasic calcium phosphate scaffold displayed improvement in the mechanical properties with higher porosity and osteoinductivity compared to the chemically derived apatite and unveiled a new paradigm for utilization of biological wastes in bone-graft application.
引用
收藏
页码:11910 / 11924
页数:15
相关论文
共 50 条
  • [21] Cell-Based Meat Scaffold Based on a 3D-Printed Starch-Based Gel
    Wang, Jing
    Dai, Siqing
    Xiang, Ning
    Zhang, Le
    Zhong, Weihong
    Shao, Ping
    Feng, Simin
    JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 2024, 72 (34) : 19143 - 19154
  • [22] 3D-printed polycaprolactone scaffold mixed with β-tricalcium phosphate as a bone regenerative material in rabbit calvarial defects
    Pae, Hyung-Chul
    Kang, Joo-Hyun
    Cha, Jae-Kook
    Lee, Jung-Seok
    Paik, Jeong-Won
    Jung, Ui-Won
    Kim, Byung-Hoon
    Choi, Seong-Ho
    JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART B-APPLIED BIOMATERIALS, 2019, 107 (04) : 1254 - 1263
  • [23] 3D-Printed Biomimetic Scaffold Simulating Microfibril Muscle Structure
    Kim, WonJin
    Kim, Minseong
    Kim, Geun Hyung
    ADVANCED FUNCTIONAL MATERIALS, 2018, 28 (26)
  • [24] 3D-Printed PLA Scaffold with Fibronectin Enhances In Vitro Osteogenesis
    Salamanca, Eisner
    Choy, Cheuk Sing
    Aung, Lwin Moe
    Tsao, Ting-Chia
    Wang, Pin-Han
    Lin, Wei-An
    Wu, Yi-Fan
    Chang, Wei-Jen
    POLYMERS, 2023, 15 (12)
  • [25] 3D-printed Mechanically Strong Calcium Phosphate Cement Scaffold with Metformin/Stem Cell-encapsulating Alginate Microbeads for Bone Tissue Engineering
    Xiong, Xiong
    Chen, Yuanyuan
    Yuan, Rupan
    Qiu, Gengtao
    Weir, Michael D.
    Xu, Hockin H. K.
    Liu, Jin
    Ruan, Jianping
    Chang, Xiaofeng
    Qu, Shuxin
    JOURNAL OF BIONIC ENGINEERING, 2022, 19 (06) : 1658 - 1670
  • [26] 3D-Printed Carbon Scaffold for Structural Lithium Metal Batteries
    Katsuyama, Yuto
    Hui, Joanne
    Thiel, Markus
    Haba, Nagihiro
    Yang, Zhiyin
    Kaner, Richard B.
    SMALL METHODS, 2024, 8 (10):
  • [27] Fractal algorithm for 3D-printed continuous porous scaffold design
    Zhao, Zongyue
    Chen, Xiaojun
    JOURNAL OF ENGINEERING-JOE, 2019, (14): : 485 - 489
  • [28] 3D-printed porous scaffold promotes osteogenic differentiation of hADMSCs
    He, Xuebin
    Ao, Huafei
    Qiao, Ying
    Li, Zhengwen
    OPEN MEDICINE, 2021, 16 (01): : 1182 - 1189
  • [29] The development of a bioengineered composite 3D-printed scaffold for tracheal regeneration
    Khalid, Tehreem
    Lemoine, Mark
    Cryan, Sally-Ann
    O'Brien, Fergal
    O'Leary, Cian
    EUROPEAN RESPIRATORY JOURNAL, 2021, 58
  • [30] Electrospun/3D-printed PCL bioactive scaffold for bone regeneration
    Rosales-Ibanez, Raul
    Viera-Ruiz, Alejandro Emmanuel
    Cauich-Rodriguez, Juan Valerio
    Carrillo-Escalante, Hugo Joel
    Gonzalez-Gonzalez, Arely
    Rodriguez-Martinez, Jesus Jiovanni
    Hernandez-Sanchez, Fernando
    POLYMER BULLETIN, 2023, 80 (03) : 2533 - 2552