Bone-tissue engineering: complex tunable structural and biological responses to injury, drug delivery, and cell-based therapies

被引:46
作者
Alghazali, Karrer M. [1 ]
Nima, Zeid A. [1 ]
Hamzah, Rabab N. [1 ]
Dhar, Madhu S. [2 ]
Anderson, David E. [2 ]
Biris, Alexandru S. [1 ]
机构
[1] Univ Arkansas, Ctr Integrat Nanotechnol Sci, Little Rock, AR 72204 USA
[2] Univ Tennessee, Coll Vet Med, Dept Large Anim Sci, Tissue Regenerat Lab, Knoxville, TN USA
基金
美国国家科学基金会;
关键词
Bone regeneration; bio-chemical agents delivery; drug therapeutics; bioactive scaffolds; stem cell biology; bone structure; biomaterials; MESENCHYMAL STEM-CELLS; CALCIUM-PHOSPHATE CEMENT; MARROW STROMAL CELLS; IN-VITRO; COMPOSITE SCAFFOLDS; OSTEOGENIC DIFFERENTIATION; SURFACE MODIFICATION; COLLAGEN SPONGES; BIOACTIVE GLASS; HYDROGEL;
D O I
10.3109/03602532.2015.1115871
中图分类号
R9 [药学];
学科分类号
100702 [药剂学];
摘要
Bone loss and failure of proper bone healing continues to be a significant medical condition in need of solutions that can be implemented successfully both in human and veterinary medicine. This is particularly true when large segmental defects are present, the bone has failed to return to normal form or function, or the healing process is extremely prolonged. Given the inherent complexity of bone tissue - its unique structural, mechanical, and compositional properties, as well as its ability to support various cells - it is difficult to find ideal candidate materials that could be used as the foundation for tissue regeneration from technological platforms. Recently, important developments have been made in the implementation of complex structures built both at the macro- and the nano-level that have been shown to positively impact bone formation and to have the ability to deliver active biological molecules (drugs, growth factors, proteins, cells) for controlled tissue regeneration and the prevention of infection. These materials are diverse, ranging from polymers to ceramics and various composites. This review presents developments in this area with a focus on the role of scaffold structure and chemistry on the biologic processes that influence bone physiology and regeneration.
引用
收藏
页码:431 / 454
页数:24
相关论文
共 170 条
[1]
Fabrication and characterization of bioactive glass-ceramic using soda-lime-silica waste glass [J].
Abbasi, Mojtaba ;
Hashemi, Babak .
MATERIALS SCIENCE & ENGINEERING C-MATERIALS FOR BIOLOGICAL APPLICATIONS, 2014, 37 :399-404
[2]
Estimating the Global Incidence of Femoral Fracture from Road Traffic Collisions A Literature Review [J].
Agarwal-Harding, Kiran J. ;
Meara, John G. ;
Greenberg, Sarah L. M. ;
Hagander, Lars E. ;
Zurakowski, David ;
Dyer, George S. M. .
JOURNAL OF BONE AND JOINT SURGERY-AMERICAN VOLUME, 2015, 97A (06) :e31.1-e31.9
[3]
Human mesenchymal stem cells modulate allogeneic immune cell responses [J].
Aggarwal, S ;
Pittenger, MF .
BLOOD, 2005, 105 (04) :1815-1822
[4]
Alobeedallah H., 2011, Trends Biomaterials Artificial Organs, V25, P12
[5]
Anil S., 2015, Current Concepts in Dental Implantology
[6]
[Anonymous], 2013, ADV BIOMATER BIOMED
[7]
[Anonymous], 2012, INT J EMERG TECHNOL
[8]
AO Foundation, 2010, AO SURG REF DUEB
[9]
Fracture management in horses: Where have we been and where are we going? [J].
Auer, Joerg A. ;
Grainger, David W. .
VETERINARY JOURNAL, 2015, 206 (01) :5-14
[10]
Cytotoxicity of 45S5 bioglass paste used for dentine hypersensitivity treatment [J].
Bakry, Ahmed Samir ;
Tamura, Yukihiko ;
Otsuki, Masayuki ;
Kasugai, Shohei ;
Ohya, Keiichi ;
Tagami, Junji .
JOURNAL OF DENTISTRY, 2011, 39 (09) :599-603