Mechanical design criteria for intervertebral disc tissue engineering

被引:197
作者
Nerurkar, Nandan L. [1 ]
Elliott, Dawn M. [1 ]
Mauck, Robert L. [1 ]
机构
[1] Univ Penn, McKay Orthopaed Res Lab, Philadelphia, PA 19104 USA
基金
美国国家卫生研究院;
关键词
Intervertebral disc mechanics; Motion segment; Annulus fibrosus; Nucleus pulposus; Tissue engineering; NUCLEUS PULPOSUS CELLS; HUMAN ANULUS FIBROSUS; HUMAN ANNULUS FIBROSUS; ELECTROSPUN NANOFIBROUS SCAFFOLDS; OSTEOGENIC PROTEIN-1 INJECTION; ADJACENT SEGMENT DEGENERATION; BIPHASIC MATERIAL PROPERTIES; EXTRACELLULAR-MATRIX; GENE-EXPRESSION; CONFINED COMPRESSION;
D O I
10.1016/j.jbiomech.2009.12.001
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
Due to the inability of current clinical practices to restore function to degenerated intervertebral discs, the arena of disc tissue engineering has received substantial attention in recent years. Despite tremendous growth and progress in this field, translation to clinical implementation has been hindered by a lack of well-defined functional benchmarks. Because successful replacement of the disc is contingent upon replication of some or all of its complex mechanical behaviors, it is critically important that disc mechanics be well characterized in order to establish discrete functional goals for tissue engineering. In this review, the key functional signatures of the intervertebral disc are discussed and used to propose a series of native tissue benchmarks to guide the development of engineered replacement tissues. These benchmarks include measures of mechanical function under tensile, compressive, and shear deformations for the disc and its substructures. In some cases, important functional measures are identified that have yet to be measured in the native tissue. Ultimately, native tissue benchmark values are compared to measurements that have been made on engineered disc tissues, identifying where functional equivalence was achieved, and where there remain opportunities for advancement. Several excellent reviews exist regarding disc composition and structure, as well as recent tissue engineering strategies; therefore this review will remain focused on the functional aspects of disc tissue engineering. (C) 2009 Elsevier Ltd. All rights reserved.
引用
收藏
页码:1017 / 1030
页数:14
相关论文
共 154 条
[1]   BIOMECHANICAL EVALUATION OF LUMBAR SPINAL STABILITY AFTER GRADED FACETECTOMIES [J].
ABUMI, K ;
PANJABI, MM ;
KRAMER, KM ;
DURANCEAU, J ;
OXLAND, T ;
CRISCO, JJ .
SPINE, 1990, 15 (11) :1142-1147
[2]   Degeneration and aging affect the tensile behavior of human lumbar anulus fibrosus [J].
Acaroglu, ER ;
Iatridis, JC ;
Setton, LA ;
Foster, RJ ;
Mow, VC ;
Weidenbaum, M .
SPINE, 1995, 20 (24) :2690-2701
[3]   What is intervertebral disc degeneration, and what causes it? [J].
Adams, Michael A. ;
Roughley, Peter J. .
SPINE, 2006, 31 (18) :2151-2161
[4]   The potential and limitations of a cell-seeded collagen/hyaluronan scaffold to engineer an intervertebral disc-like matrix [J].
Alini, M ;
Li, W ;
Markovic, P ;
Aebi, M ;
Spiro, RC ;
Roughley, PJ .
SPINE, 2003, 28 (05) :446-453
[5]   Finite deformation biphasic material properties of bovine articular cartilage from confined compression experiments [J].
Ateshian, GA ;
Warden, WH ;
Kim, JJ ;
Grelsamer, RP ;
Mow, VC .
JOURNAL OF BIOMECHANICS, 1997, 30 (11-12) :1157-1164
[6]   Collagen gene expression and mechanical properties of intervertebral disc cell-alginate cultures [J].
Baer, AE ;
Wang, JY ;
Kraus, VB ;
Setton, LA .
JOURNAL OF ORTHOPAEDIC RESEARCH, 2001, 19 (01) :2-10
[7]   The effect of nanofiber alignment on the maturation of engineered meniscus constructs [J].
Baker, Brendon M. ;
Mauck, Robert L. .
BIOMATERIALS, 2007, 28 (11) :1967-1977
[8]   Biaxial testing of human annulus fibrosus and its implications for a constitutive formulation [J].
Bass, EC ;
Ashford, FA ;
Segal, MR ;
Lotz, JC .
ANNALS OF BIOMEDICAL ENGINEERING, 2004, 32 (09) :1231-1242
[9]  
BECKSTEIN JC, 2007, T 53 ANN M ORTH RES, V32
[10]   Comparison of animal discs used in disc research to human lumbar disc [J].
Beckstein, Jesse C. ;
Sen, Sounok ;
Schaer, Thomas P. ;
Vresilovic, Edward J. ;
Elliott, Dawn M. .
SPINE, 2008, 33 (06) :E166-E173