Bone Tissue Engineering in the Treatment of Bone Defects

被引:261
作者
Xue, Nannan [1 ,2 ]
Ding, Xiaofeng [1 ]
Huang, Rizhong [1 ]
Jiang, Ruihan [1 ]
Huang, Heyan [1 ]
Pan, Xin [2 ]
Min, Wen [1 ]
Chen, Jun [1 ]
Duan, Jin-Ao [2 ]
Liu, Pei [2 ]
Wang, Yiwei [1 ,2 ,3 ]
机构
[1] Nanjing Univ Chinese Med, Jiangsu Prov Engn Res Ctr Tradit Chinese Med Exte, Nanjing 210023, Peoples R China
[2] Nanjing Univ Chinese Med, Jiangsu Collaborat Innovat Ctr Chinese Med Resour, Natl & Local Collaborat Engn Ctr Chinese Med Reso, Jiangsu Key Lab High Technol Res TCM Formulae, Nanjing 210023, Peoples R China
[3] Univ Sydney, Concord Repatriat Gen Hosp, ANZAC Res Inst, Burns Injury & Reconstruct Surg Res, Concord 2137, Australia
关键词
bone defect; tissue regeneration; 3D printing; scaffolds; biomaterials; tissue engineering; CALCIUM-PHOSPHATE CEMENT; MESENCHYMAL STEM-CELLS; PORE-SIZE; MINERAL DENSITY; IN-VITRO; OSTEOGENIC DIFFERENTIATION; LOCAL-DELIVERY; SCAFFOLDS; REGENERATION; MICRONEEDLE;
D O I
10.3390/ph15070879
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
Bones play an important role in maintaining exercise and protecting organs. Bone defect, as a common orthopedic disease in clinics, can cause tremendous damage with long treatment cycles. Therefore, the treatment of bone defect remains as one of the main challenges in clinical practice. Today, with increased incidence of bone disease in the aging population, demand for bone repair material is high. At present, the method of clinical treatment for bone defects including non-invasive therapy and invasive therapy. Surgical treatment is the most effective way to treat bone defects, such as using bone grafts, Masquelet technique, Ilizarov technique etc. In recent years, the rapid development of tissue engineering technology provides a new treatment strategy for bone repair. This review paper introduces the current situation and challenges of clinical treatment of bone defect repair in detail. The advantages and disadvantages of bone tissue engineering scaffolds are comprehensively discussed from the aspect of material, preparation technology, and function of bone tissue engineering scaffolds. This paper also summarizes the 3D printing technology based on computer technology, aiming at designing personalized artificial scaffolds that can accurately fit bone defects.
引用
收藏
页数:24
相关论文
共 203 条
[1]  
ALBREKTSSON T, 1986, DENT CLIN N AM, V30, P151
[2]   Tissue engineering strategies for promoting vascularized bone regeneration [J].
Almubarak, Sarah ;
Nethercott, Hubert ;
Freeberg, Marie ;
Beaudon, Caroline ;
Jha, Amit ;
Jackson, Wesley ;
Marcucio, Ralph ;
Miclau, Theodore ;
Healy, Kevin ;
Bahney, Chelsea .
BONE, 2016, 83 :197-209
[3]   Parathyroid Hormone PTH(1-34) Formulation that Enables Uniform Coating on a Novel Transdermal Microprojection Delivery System [J].
Ameri, Mahmoud ;
Fan, Shelley C. ;
Maa, Yuh-Fun .
PHARMACEUTICAL RESEARCH, 2010, 27 (02) :303-313
[4]   Injectable osteogenic microtissues containing mesenchymal stromal cells conformally fill and repair critical-size defects [J].
Annamalai, Ramkumar T. ;
Hong, Xiaowei ;
Schott, Nicholas G. ;
Tiruchinapally, Gopinath ;
Levi, Benjamin ;
Stegemann, Jan P. .
BIOMATERIALS, 2019, 208 :32-44
[5]   Effects of systemically administered abaloparatide, an osteoanabolic PTHrP analog, as an adjuvant therapy for spinal fusion in rats [J].
Arlt, Heike ;
Besschetnova, Tatiana ;
Ominsky, Michael S. ;
Fredericks, Douglas C. ;
Lanske, Beate .
JOR SPINE, 2021, 4 (01)
[6]   Advancing Frontiers in Bone Bioprinting [J].
Ashammakhi, Nureddin ;
Hasan, Anwarul ;
Kaarela, Outi ;
Byambaa, Batzaya ;
Sheikhi, Amir ;
Gaharwar, Akhilesh K. ;
Khademhosseini, Ali .
ADVANCED HEALTHCARE MATERIALS, 2019, 8 (07)
[7]   Enhanced osseointegration of three-dimensional supramolecular bioactive interface through osteoporotic microenvironment regulation [J].
Bai, Haotian ;
Zhao, Yue ;
Wang, Chenyu ;
Wang, Zhonghan ;
Wang, Jincheng ;
Liu, Hou ;
Feng, Yubin ;
Lin, Quan ;
Li, Zuhao ;
Liu, He .
THERANOSTICS, 2020, 10 (11) :4779-4794
[8]   Optimization of Three Dimensional Culturing of the HepG2 Cell Line in Fibrin Scaffold [J].
Banihashemi, Mehrzad ;
Mohkam, Milad ;
Safari, Azam ;
Nezafat, Navid ;
Negahdaripour, Manica ;
Mohammadi, Fatemeh ;
Kianpour, Sedigheh ;
Ghasemi, Younes .
HEPATITIS MONTHLY, 2015, 15 (03)
[9]   Influence of Electron Beam Melting Manufactured Implants on Ingrowth and Shear Strength in an Ovine Model [J].
Bertollo, Nicky ;
Da Assuncao, Ruy ;
Hancock, Nicholas J. ;
Lau, Abe ;
Walsh, William R. .
JOURNAL OF ARTHROPLASTY, 2012, 27 (08) :1429-1436
[10]   M2 macrophagy-derived exosomal miRNA-26a-5p induces osteogenic differentiation of bone mesenchymal stem cells [J].
Bin-bin, Zhang ;
Da-wa, Zha Xi ;
Chao, Li ;
Lan-tao, Zhang ;
Tao, Wu ;
Chuan, Lu ;
Chao-zheng, Liu ;
De-chun, Li ;
Chang, Feng ;
Shu-qing, Wei ;
Zu-nan, Dong ;
Xian-wei, Pei ;
Zhang, Zhi-xia ;
Ke-wen, Li .
JOURNAL OF ORTHOPAEDIC SURGERY AND RESEARCH, 2022, 17 (01)