Vascularization Strategies for Bone Regeneration

被引:61
作者
Krishnan, Laxminarayanan [1 ]
Willett, Nick J. [1 ]
Guldberg, Robert E. [1 ]
机构
[1] Georgia Inst Technol, Parker H Petit Inst Bioengn & Biosci, George W Woodruff Sch Mech Engn, Atlanta, GA 30332 USA
基金
美国国家卫生研究院;
关键词
Vascularization strategies; Functional adaptation; Bone regeneration; ENDOTHELIAL GROWTH-FACTOR; MARROW STROMAL CELLS; MESENCHYMAL STEM-CELLS; PEPTIDE TP508; MICROVESSEL FRAGMENTS; AXIAL VASCULARIZATION; BLOOD-FLOW; IN-VITRO; TISSUE; ANGIOGENESIS;
D O I
10.1007/s10439-014-0969-9
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
The functional regeneration of thick vascularized tissues such as bone and muscle is complicated by the large volume of lost tissue, challenging biomechanical environment, and the need to reproduce the highly organized structure of both the native tissue extracellular matrix and its vascular support system. Stem cell or progenitor cell delivery approaches, for example, continue to be plagued by low viability and engraftment in part due to the initial absence of a vascular supply. Recognition of diffusion limitations in thick tissues has prompted regenerative strategies that seek to accelerate establishment of a functional vasculature. The successful design of robust regeneration strategies for these challenging clinical scenarios will rely on a thorough understanding of interactions between construct design parameters and host biological and biomechanical factors. Here, we discuss the critical role of vascularization in normal bone tissue homeostasis and repair, vascular network adaptation to the local biomechanical environment, and the future directions of revascularization approaches being developed and integrated with bone regeneration strategies.
引用
收藏
页码:432 / 444
页数:13
相关论文
共 98 条
[1]   Reconstruction of mandibular defects with autologous tissue-engineered bone [J].
Abukawa, H ;
Shin, M ;
Williams, WB ;
Vacanti, JP ;
Kaban, LB ;
Troulis, MJ .
JOURNAL OF ORAL AND MAXILLOFACIAL SURGERY, 2004, 62 (05) :601-606
[2]  
Amini Ami R., 2012, Critical Reviews in Biomedical Engineering, V40, P363
[3]   Impact of severity of local soft-tissue trauma on long-term manifestation of microcirculatory and microlymphatic dysfunctions [J].
Amon, Michaela ;
Laschke, Matthias W. ;
Harder, Yves ;
Vollmar, Brigitte ;
Menger, Michael D. .
JOURNAL OF TRAUMA-INJURY INFECTION AND CRITICAL CARE, 2006, 61 (04) :924-932
[4]   TISSUE OXYGEN-TENSION IN EXTERNALLY STABILIZED TIBIAL FRACTURES IN RABBITS DURING NORMAL HEALING AND INFECTION [J].
ARO, H ;
EEROLA, E ;
AHO, AJ ;
NIINIKOSKI, J .
JOURNAL OF SURGICAL RESEARCH, 1984, 37 (03) :202-207
[5]  
ARONSON J, 1994, CLIN ORTHOP RELAT R, P124
[6]   Building Vascular Networks [J].
Bae, Hojae ;
Puranik, Amey S. ;
Gauvin, Robert ;
Edalat, Faramarz ;
Carrillo-Conde, Brenda ;
Peppas, Nicholas A. ;
Khademhosseini, Ali .
SCIENCE TRANSLATIONAL MEDICINE, 2012, 4 (160)
[7]   Successful treatment of refractory tibial nonunion using calcium sulphate and bone marrow stromal cell implantation [J].
Bajada, S. ;
Harrison, P. E. ;
Ashton, B. A. ;
Cassar-Pullicino, V. N. ;
Ashammakhi, N. ;
Richardson, J. B. .
JOURNAL OF BONE AND JOINT SURGERY-BRITISH VOLUME, 2007, 89B (10) :1382-1386
[8]   Axial vascularization of a large volume calcium phosphate ceramic bone substitute in the sheep AV loop model [J].
Beier, Justus P. ;
Horch, Raymund E. ;
Hess, Andreas ;
Arkudas, Andreas ;
Heinrich, Johanna ;
Loew, Johanna ;
Gulle, Heinz ;
Polykandriotis, Elias ;
Bleiziffer, Oliver ;
Kneser, Ulrich .
JOURNAL OF TISSUE ENGINEERING AND REGENERATIVE MEDICINE, 2010, 4 (03) :216-223
[9]  
Benjamin S, 2013, TISSUE ENG PT A, V19, P748, DOI [10.1089/ten.TEA.2012.0298, 10.1089/ten.tea.2012.0298]
[10]   MICRO-VASCULAR FREE BONE TRANSFER WITH REVASCULARIZATION OF THE MEDULLARY AND PERIOSTEAL CIRCULATION OR THE PERIOSTEAL CIRCULATION ALONE - A COMPARATIVE EXPERIMENTAL-STUDY [J].
BERGGREN, A ;
WEILAND, AJ ;
OSTRUP, LT ;
DORFMAN, H .
JOURNAL OF BONE AND JOINT SURGERY-AMERICAN VOLUME, 1982, 64 (01) :73-87