Fabrication of calcium phosphate–calcium sulfate injectable bone substitute using hydroxy-propyl-methyl-cellulose and citric acid

被引:2
|
作者
Van Viet Thai
Byong-Taek Lee
机构
[1] Soonchunhyang University,Department of Biomedical Engineering and Materials, School of Medicine
关键词
Chitosan; Compressive Strength; Citric Acid; Calcium Phosphate Cement; DCPD;
D O I
暂无
中图分类号
学科分类号
摘要
In this study, an injectable bone substitute (IBS) consisting of citric acid, chitosan, and hydroxyl propyl methyl cellulose (HPMC) as the liquid phase and tetra calcium phosphate (TTCP), dicalcium phosphate dihydrate (DCPD) and calcium sulfate dehydrate (CSD, CaSO4·2H2O) powders as the solid phase, were fabricated. Two groups were classified based on the percent of citric acid in the liquid phase (20, 40 wt%). In each groups, the HPMC percentage was 0, 2, and 4 wt%. An increase in compressive strength due to changes in morphology was confirmed by scanning electron microscopy images. A good conversion rate of HAp at 20% citric acid was observed in the XRD profiles. In addition, HPMC was not obviously affected by apatite formation. However, both HPMC and citric acid increased the compressive strength of IBS. The maximum compressive strength for IBS was with 40% citric acid and 4% HPMC after 14 days of incubation in 100% humidity at 37°C.
引用
收藏
页码:1867 / 1874
页数:7
相关论文
共 50 条
  • [21] Bone augmentation using a new injectable bone graft substitute by combining calcium phosphate and bisphosphonate as composite—an animal model
    Carsten W. Schlickewei
    Georg Laaff
    Anne Andresen
    Till O. Klatte
    Johannes M. Rueger
    Johannes Ruesing
    Matthias Epple
    Wolfgang Lehmann
    Journal of Orthopaedic Surgery and Research, 10
  • [22] A new injectable bone substitute combining poly(ε-caprolactone) microparticles with biphasic calcium phosphate granules
    Iooss, P
    Le Ray, AM
    Grimandi, G
    Daculsi, G
    Merle, C
    BIOMATERIALS, 2001, 22 (20) : 2785 - 2794
  • [23] Bone augmentation using a new injectable bone graft substitute by combining calcium phosphate and bisphosphonate as composite-an animal model
    Schlickewei, Carsten W.
    Laaff, Georg
    Andresen, Anne
    Klatte, Till O.
    Rueger, Johannes M.
    Ruesing, Johannes
    Epple, Matthias
    Lehmann, Wolfgang
    JOURNAL OF ORTHOPAEDIC SURGERY AND RESEARCH, 2015, 10
  • [24] Augmentation of anterior vertebral body screw fixation by an injectable, biodegradable calcium phosphate bone substitute
    Bai, B
    Kummer, FJ
    Spivak, J
    SPINE, 2001, 26 (24) : 2679 - 2683
  • [25] Primary study of an injectable in situ composite of collagen/calcium phosphate porous scaffold for bone substitute
    Yao, Q
    Li, DX
    Liu, KW
    Zhang, B
    Li, H
    Fan, HS
    Zhang, XD
    BIOCERAMICS 18, PTS 1 AND 2, 2006, 309-311 : 857 - 860
  • [26] Using calcium sulfate cementHydroxypropyl methyl cellulose/sodium alginate composites as substitutes of bone wax
    Zhou, Huan
    Yang, Mengmeng
    Ni, Xinye
    Yang, Lei
    Kutty, Muralithran G.
    INTERNATIONAL JOURNAL OF APPLIED CERAMIC TECHNOLOGY, 2018, 15 (04) : 903 - 909
  • [27] 3D Printing of Calcium Phosphate/Calcium Sulfate with Alginate/Cellulose-Based Scaffolds for Bone Regeneration: Multilayer Fabrication and Characterization
    Wattanaanek, Nattanan
    Suttapreyasri, Srisurang
    Samruajbenjakun, Bancha
    JOURNAL OF FUNCTIONAL BIOMATERIALS, 2022, 13 (02)
  • [28] Enhanced Osteogenesis of Injectable Calcium Phosphate Bone Cement Mediated by Loading Chondroitin Sulfate
    Shi, Haishan
    Ye, Xiaoling
    Zhang, Jing
    Ye, Jiandong
    ACS BIOMATERIALS SCIENCE & ENGINEERING, 2019, 5 (01): : 262 - 271
  • [29] Increased bone formation using calcium sulfate-calcium phosphate composite graft
    Urban, Robert M.
    Turner, Thomas M.
    Hall, Deborah J.
    Inoue, Nozomu
    Gitelis, Steven
    CLINICAL ORTHOPAEDICS AND RELATED RESEARCH, 2007, (459) : 110 - 117
  • [30] Unexpected radiographic lucency following grafting of bone defects with calcium sulfate/tricalcium phosphate bone substitute
    Auston, Darryl A.
    Feibert, Matthew
    Craig, Tina
    Damron, Timothy A.
    SKELETAL RADIOLOGY, 2015, 44 (10) : 1453 - 1459