Combined Effect of a Microporous Layer and Type I Collagen Coating on a Biphasic Calcium Phosphate Scaffold for Bone Tissue Engineering

被引:31
作者
Lee, Mun-Hwan [1 ]
You, Changkook [1 ]
Kim, Kyo-Han [2 ]
机构
[1] Kyungpook Natl Univ, Grad Sch, Dept Med & Biol Engn, Daegu 700412, South Korea
[2] Kyungpook Natl Univ, Sch Dent, Dept Dent Biomat, Daegu 700412, South Korea
来源
MATERIALS | 2015年 / 8卷 / 03期
关键词
45S5 BIOGLASS(R)-BASED SCAFFOLDS; GRAFT SUBSTITUTES; MIMETIC PEPTIDE; CELL-ADHESION; SURFACE; HYDROXYAPATITE; BIOMATERIALS; TITANIUM; DIFFERENTIATION; BEHAVIOR;
D O I
10.3390/ma8031150
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
In this study, type I collagen was coated onto unmodified and modified microporous biphasic calcium phosphate (BCP) scaffolds. Surface characterization using a scanning electron microscope (SEM) and a surface goniometer confirmed the modification of the BCP coating. The quantity of the collagen coating was investigated using Sirius Red staining, and quantitative assessment of the collagen coating showed no significant differences between the two groups. MG63 cells were used to evaluate cell proliferation and ALP activity on the modified BCP scaffolds. The modified microporous surfaces showed low contact angles and large surface areas, which enhanced cell spreading and proliferation. Coating of the BCP scaffolds with type I collagen led to enhanced cell-material interactions and improved MG63 functions, such as spreading, proliferation, and differentiation. The micropore/collagen-coated scaffold showed the highest rate of cell response. These results indicate that a combination of micropores and collagen enhances cellular function on bioengineered bone allograft tissue.
引用
收藏
页码:1150 / 1161
页数:12
相关论文
共 35 条
[1]   Effect of micro- and macroporosity of bone substitutes on their mechanical properties and cellular response [J].
Bignon, A ;
Chouteau, J ;
Chevalier, J ;
Fantozzi, G ;
Carret, JP ;
Chavassieux, P ;
Boivin, G ;
Melin, M ;
Hartmann, D .
JOURNAL OF MATERIALS SCIENCE-MATERIALS IN MEDICINE, 2003, 14 (12) :1089-1097
[2]   Quantitative intravoxel analysis of microCT-scanned resorbing ceramic biomaterials - Perspectives for computer-aided biomaterial design [J].
Czenek, Agnes ;
Blanchard, Romane ;
Dejaco, Alexander ;
Sigurjonsson, Olafur E. ;
Orlygsson, Gissur ;
Gargiulo, Paolo ;
Hellmich, Christian .
JOURNAL OF MATERIALS RESEARCH, 2014, 29 (23) :2757-2772
[3]   Bone, grafts and bone graft substitutes in orthopedic trauma surgery - A critical analysis [J].
De Long, William G., Jr. ;
Einhorn, Thomas A. ;
Koval, Kenneth ;
McKee, Michael ;
Smith, Wade ;
Sanders, Roy ;
Watson, Tracy .
JOURNAL OF BONE AND JOINT SURGERY-AMERICAN VOLUME, 2007, 89A (03) :649-658
[4]  
Ellinger R F, 1986, Int J Periodontics Restorative Dent, V6, P22
[5]   Micromechanics-Derived Scaling Relations for Poroelasticity and Strength of Brittle Porous Polycrystals [J].
Fritsch, Andreas ;
Hellmich, Christian ;
Young, Philippe .
JOURNAL OF APPLIED MECHANICS-TRANSACTIONS OF THE ASME, 2013, 80 (02)
[6]   Mechanical behavior of hydroxyapatite biomaterials: An experimentally validated micromechanical model for elasticity and strength [J].
Fritsch, Andreas ;
Dormieux, Luc ;
Hellmich, Christian ;
Sanahuja, Julien .
JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART A, 2009, 88A (01) :149-161
[7]   3D microenvironment as essential element for osteoinduction by biomaterials [J].
Habibovic, P ;
Yuan, HP ;
van der Valk, CM ;
Meijer, G ;
van Blitterswijk, CA ;
de Groot, K .
BIOMATERIALS, 2005, 26 (17) :3565-3575
[8]   Microporosity enhances bioactivity of synthetic bone graft substitutes [J].
Hing, KA ;
Annaz, B ;
Saeed, S ;
Revell, PA ;
Buckland, T .
JOURNAL OF MATERIALS SCIENCE-MATERIALS IN MEDICINE, 2005, 16 (05) :467-475
[9]   Mediation of bone ingrowth in porous hydroxyapatite bone graft substitutes [J].
Hing, KA ;
Best, SM ;
Tanner, KE ;
Bonfield, W ;
Revell, PA .
JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART A, 2004, 68A (01) :187-200
[10]   Ectopic bone formation in rat marrow stromal cell/titanium fiber mesh scaffold constructs: Effect of initial cell phenotype [J].
Holtorf, HL ;
Jansen, JA ;
Mikos, AG .
BIOMATERIALS, 2005, 26 (31) :6208-6216