Hydrogels derived from demineralized and decellularized bone extracellular matrix

被引:253
作者
Sawkins, M. J. [1 ]
Bowen, W. [1 ]
Dhadda, P. [1 ]
Markides, H. [1 ]
Sidney, L. E. [1 ]
Taylor, A. J. [1 ]
Rose, F. R. A. J. [1 ]
Badylak, S. F. [2 ]
Shakeshehh, K. M. [1 ]
White, L. J. [1 ]
机构
[1] Univ Nottingham, Sch Pharm, Nottingham NG7 2RD, England
[2] Univ Pittsburgh, McGowan Inst Regenerat Med, Pittsburgh, PA USA
基金
英国工程与自然科学研究理事会; 欧洲研究理事会; 英国生物技术与生命科学研究理事会;
关键词
Extracellular matrix; Demineralized bone matrix; Hydrogel; Bone graft; Decellularization; GRAFT SUBSTITUTES; IN-VITRO; MECHANICAL-PROPERTIES; BIOLOGIC SCAFFOLDS; COLLAGEN SOLUTIONS; HEART-VALVES; TISSUE; MODEL; RECONSTRUCTION; PROLIFERATION;
D O I
10.1016/j.actbio.2013.04.029
中图分类号
R318 [生物医学工程];
学科分类号
100103 [病原生物学];
摘要
The extracellular matrix (ECM) of mammalian tissues has been isolated, decellularized and utilized as a scaffold to facilitate the repair and reconstruction of numerous tissues. Recent studies have suggested that superior function and complex tissue formation occurred when ECM scaffolds were derived from site-specific homologous tissues compared with heterologous tissues. The objectives of the present study were to apply a stringent decellularization process to demineralized bone matrix (DBM), prepared from bovine bone, and to characterize the structure and composition of the resulting ECM materials and DBM itself. Additionally, we sought to produce a soluble form of DBM and ECM which could be induced to form a hydrogel. Current clinical delivery of DBM particles for treatment of bone defects requires incorporation of the particles within a carrier liquid. Differences in osteogenic activity, inflammation and nephrotoxicity have been reported with various carrier liquids. The use of hydrogel forms of DBM or ECM may reduce the need for carrier liquids. DBM and ECM hydrogels exhibited sigmoidal gelation kinetics consistent with a nucleation and growth mechanism, with ECM hydrogels characterized by lower storage moduli than the DBM hydrogels. Enhanced proliferation of mouse primary calvarial cells was achieved on ECM hydrogels, compared with collagen type I and DBM hydrogels. These results show that DBM and ECM hydrogels have distinct structural, mechanical and biological properties and have the potential for clinical delivery without the need for carrier liquids. (C) 2013 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
引用
收藏
页码:7865 / 7873
页数:9
相关论文
共 55 条
[1]
Commercially available demineralized bone matrix compositions to regenerate calvarial critical-sized bone defects [J].
Acarturk, Tahsin Oguz ;
Hollinger, Jeffrey O. .
PLASTIC AND RECONSTRUCTIVE SURGERY, 2006, 118 (04) :862-873
[2]
[Anonymous], 2008, TISSUE ENG A, V14, P2089
[3]
The extracellular matrix as a scaffold for tissue reconstruction [J].
Badylak, SE .
SEMINARS IN CELL & DEVELOPMENTAL BIOLOGY, 2002, 13 (05) :377-383
[4]
Esophageal reconstruction with ECM and muscle tissue in a dog model [J].
Badylak, SF ;
Vorp, DA ;
Spievack, AR ;
Simmons-Byrd, A ;
Hanke, J ;
Freytes, DO ;
Thapa, A ;
Gilbert, TW ;
Nieponice, A .
JOURNAL OF SURGICAL RESEARCH, 2005, 128 (01) :87-97
[5]
Immune response to biologic scaffold materials [J].
Badylak, Stephen E. ;
Gilbert, Thomas W. .
SEMINARS IN IMMUNOLOGY, 2008, 20 (02) :109-116
[6]
The extracellular matrix as a biologic scaffold material [J].
Badylak, Stephen F. .
BIOMATERIALS, 2007, 28 (25) :3587-3593
[7]
The use of extracellular matrix as an inductive scaffold for the partial replacement of functional myocardium [J].
Badylak, Stephen F. ;
Kochupura, Paul V. ;
Cohen, Ira S. ;
Doronin, Sergey V. ;
Saltman, Adam E. ;
Gilbert, Thomas W. ;
Kelly, Damon J. ;
Ignotz, Ronald A. ;
Gaudette, Glenn R. .
CELL TRANSPLANTATION, 2006, 15 :S29-S40
[8]
Chemoattraction of Progenitor Cells by Remodeling Extracellular Matrix Scaffolds [J].
Beattie, Allison J. ;
Gilbert, Thomas W. ;
Guyot, Juan Pablo ;
Yates, Adolph J. ;
Badylak, Stephen F. .
TISSUE ENGINEERING PART A, 2009, 15 (05) :1119-1125
[9]
An unexpected outcome during testing of commercially available demineralized bone graft materials - How safe are the nonallograft components? [J].
Bostrom, MPG ;
Yang, X ;
Kennan, M ;
Sandhu, H ;
Dicarlo, E ;
Lane, JM .
SPINE, 2001, 26 (13) :1425-1428
[10]
Brightman AO, 2000, BIOPOLYMERS, V54, P222