纳米羟基磷灰石复合物治疗骨缺损的研究进展

被引:14
作者
孙浩远
宋科官
机构
[1] 哈尔滨医科大学附属第一医院运动医学科
基金
国家重点研发计划;
关键词
羟基磷灰石类; 纳米复合物; 生物相容性材料; 骨缺损; 壳聚糖; 胶原; 明胶; 丝素蛋白; 高分子聚合物;
D O I
暂无
中图分类号
R318.08 [生物材料学]; R687 [矫形外科手术学];
学科分类号
100103 [病原生物学]; 100220 [骨科学];
摘要
纳米羟基磷灰石(n HA)具有良好的生物相容性、生物活性和骨传导性,是一种性能优异的骨修复材料,但脆性大、强度低,不适合直接用于骨缺损治疗。近年来随着材料学、组织工程学以及纳米技术的快速发展,nHA复合生物材料逐渐成为骨组织领域的研究热点。本文综述nHA复合骨缺损替代材料的制备、生物相容性、机械性能及其在骨缺损治疗中的应用,旨在为寻找理想的人工骨缺损修复材料提供参考。
引用
收藏
页码:300 / 307
页数:8
相关论文
共 48 条
[1]
Nano-hydroxyapatite-alginate-gelatin microcapsule as a potential osteogenic building block for modular bone tissue engineering.[J].Mahboubeh Nabavinia;Ali Baradar Khoshfetrat;Hojjat Naderi-Meshkin.Materials Science & Engineering C.2019,
[2]
Magnetic bioinspired micro/nanostructured composite scaffold for bone regeneration.[J].Yao Zhao;Tiantang Fan;Jingdi Chen;Jiacan Su;Xin Zhi;Panpan Pan;Lin Zou;Qiqing Zhang.Colloids and Surfaces B: Biointerfaces.2019,
[3]
Silk-Based Biomaterials in Cutaneous Wound Healing: A Systematic Review [J].
Kamalathevan, Pragash ;
Ooi, Peng S. ;
Loo, Yew L. .
ADVANCES IN SKIN & WOUND CARE, 2018, 31 (12) :565-573
[4]
Comparative investigation of porous nano-hydroxyapaptite/chitosan; nano-zirconia/chitosan and novel nano-calcium zirconate/chitosan composite scaffolds for their potential applications in bone regeneration.[J].Bipin Gaihre;Ambalangodage C. Jayasuriya.Materials Science & Engineering C.2018,
[5]
Three-dimensional Electrospun Nanofibrous Scaffolds Displaying Bone Morphogenetic Protein-2-derived Peptides for the Promotion of Osteogenic Differentiation of Stem cells and Bone Regeneration.[J].Kaiqiang Ye;Dinghua Liu;Haizhu Kuang;Jiangyu Cai;Weiming chen;Binbin Sun;Lunguo Xia;Bing Fang;Yosry Morsi;Xiumei Mo.Journal of Colloid And Interface Science.2018,
[6]
Gelatin/nano-hydroxyapatite hydrogel scaffold prepared by sol-gel technology as filler to repair bone defects [J].
Raucci, Maria Grazia ;
Demitri, Christian ;
Soriente, Alessandra ;
Fasolino, Ines ;
Sannino, Alessandro ;
Ambrosio, Luigi .
JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART A, 2018, 106 (07) :2007-2019
[7]
Biomimetic mineralized hierarchical hybrid scaffolds based on in situ synthesis of nano-hydroxyapatite/chitosan/chondroitin sulfate/hyaluronic acid for bone tissue engineering.[J].Yimin Hu;Jingdi Chen;Tiantang Fan;Yujue Zhang;Yao Zhao;Xuetao Shi;Qiqing Zhang.Colloids and Surfaces B: Biointerfaces.2017,
[8]
Effects of Nano-hydroxyapatite/Poly(DL-lactic-co-glycolic acid) Microsphere-Based Composite Scaffolds on Repair of Bone Defects: Evaluating the Role of Nano-hydroxyapatite Content [J].
He, Shu ;
Lin, Kai-Feng ;
Sun, Zhen ;
Song, Yue ;
Zhao, Yi-Nan ;
Wang, Zheng ;
Bi, Long ;
Liu, Jian .
ARTIFICIAL ORGANS, 2016, 40 (07) :E128-E135
[9]
Novel mineralized heparin–gelatin nanoparticles for potential application in tissue engineering of bone [J].
Yuan Yang ;
Haihao Tang ;
Alexander Köwitsch ;
Karsten Mäder ;
Gerd Hause ;
Joachim Ulrich ;
Thomas Groth .
Journal of Materials Science: Materials in Medicine, 2014, 25 :669-680
[10]
Development of composite porous scaffolds based on poly(lactide-co-glycolide)/nano-hydroxyapatite via selective laser sintering.[J].Cijun Shuai;Bo Yang;Shuping Peng;Zheng Li.The International Journal of Advanced Manufacturing Technology.2013, 1-4