Evaluation of Fibrin-Based Interpenetrating Polymer Networks as Potential Biomaterials for Tissue Engineering

被引:38
作者
Gsib, Olfat [1 ]
Duval, Jean-Luc [1 ]
Goczkowski, Mathieu [2 ]
Deneufchatel, Marie [2 ,3 ]
Fichet, Odile [3 ]
Larreta-Garde, Veronique [2 ]
Bencherif, Sidi Ahmed [1 ,4 ,5 ]
Egles, Christophe [1 ]
机构
[1] Univ Technol Compiegne, Sorbonne Univ, CNRS, UMR 7388,Lab BioMecan & BioIngn BMBI, F-60200 Compiegne, France
[2] Univ Cergy Pontoise, Inst Mat, Equipe Rech Relat Matrice Extracellulaire Cellule, F-95000 Cergy Pontoise, France
[3] Univ Cergy Pontoise, Inst Mat, LPPI, F-95000 Cergy Pontoise, France
[4] Harvard Univ, Sch Engn & Appl Sci, Cambridge, MA 02138 USA
[5] Northeastern Univ, Dept Chem Engn, 360 Huntington Ave, Boston, MA 02215 USA
关键词
interpenetrating polymer networks; fibrin; polyethylene oxide; serum albumin; fibrous hydrogel; biocompatibility; organotypic culture; tissue engineering; biomaterials; HYALURONIC-ACID HYDROGELS; ACELLULAR DERMAL MATRIX; IN-VITRO; ORGANOTYPIC CULTURE; CELL-ADHESION; SOFT-TISSUE; STEM-CELLS; SCAFFOLD DESIGN; BIOCOMPATIBILITY; ALBUMIN;
D O I
10.3390/nano7120436
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Interpenetrating polymer networks (IPNs) have gained great attention for a number of biomedical applications due to their improved properties compared to individual components alone. In this study, we investigated the capacity of newly-developed naturally-derived IPNs as potential biomaterials for tissue engineering. These IPNs combine the biologic properties of a fibrous fibrin network polymerized at the nanoscale and the mechanical stability of polyethylene oxide (PEO). First, we assessed their cytotoxicity in vitro on L929 fibroblasts. We further evaluated their biocompatibility ex vivo with a chick embryo organotypic culture model. Subcutaneous implantations of the matrices were subsequently conducted on nude mice to investigate their biocompatibility in vivo. Our preliminary data highlighted that our biomaterials were non-cytotoxic (viability above 90%). The organotypic culture showed that the IPN matrices induced higher cell adhesion (across all the explanted organ tissues) and migration (skin, intestine) than the control groups, suggesting the advantages of using a biomimetic, yet mechanically-reinforced IPN-based matrix. We observed no major inflammatory response up to 12 weeks post implantation. All together, these data suggest that these fibrin-based IPNs are promising biomaterials for tissue engineering.
引用
收藏
页数:21
相关论文
共 107 条
[1]   Fibrin: A versatile scaffold for tissue engineering applications [J].
Ahmed, Tamer A. E. ;
Dare, Emma V. ;
Hincke, Max .
TISSUE ENGINEERING PART B-REVIEWS, 2008, 14 (02) :199-215
[2]   Fibrin-polyethylene oxide interpenetrating polymer networks: New self-supported biomaterials combining the properties of both protein gel and synthetic polymer [J].
Akpalo, E. ;
Bidault, L. ;
Boissiere, M. ;
Vancaeyzeele, C. ;
Fichet, O. ;
Larreta-Garde, V. .
ACTA BIOMATERIALIA, 2011, 7 (06) :2418-2427
[3]   Construction of a complete rabbit cornea substitute using a fibrin-agarose scaffold [J].
Alaminos, Miguel ;
Del Carmen Sanchez-Quevdo, Maria ;
Munoz-Avila, Jose Ignacio ;
Serrano, Daniel ;
Medialdea, Santiago ;
Carreras, Ignacio ;
Campos, Antonio .
INVESTIGATIVE OPHTHALMOLOGY & VISUAL SCIENCE, 2006, 47 (08) :3311-3317
[4]   Biosynthetic hydrogel scaffolds made from fibrinogen and polyethylene glycol for 3D cell cultures [J].
Almany, L ;
Seliktar, D .
BIOMATERIALS, 2005, 26 (15) :2467-2477
[5]   Foreign body reaction to biomaterials [J].
Anderson, James M. ;
Rodriguez, Analiz ;
Chang, David T. .
SEMINARS IN IMMUNOLOGY, 2008, 20 (02) :86-100
[6]   Fibrin as a scaffold for cardiac tissue engineering [J].
Barsotti, Maria Chiara ;
Felice, Francesca ;
Balbarini, Alberto ;
Di Stefano, Rossella .
BIOTECHNOLOGY AND APPLIED BIOCHEMISTRY, 2011, 58 (05) :301-310
[7]  
Benavides OM, 2015, TISSUE ENG PT A, V21, P1185, DOI [10.1089/ten.tea.2014.0288, 10.1089/ten.TEA.2014.0288]
[8]   Influence of the degree of methacrylation on hyaluronic acid hydrogels properties [J].
Bencherif, Sidi A. ;
Srinivasan, Abiraman ;
Horkay, Ferenc ;
Hollinger, Jeffrey O. ;
Matyjaszewski, Krzysztof ;
Washburn, Newell R. .
BIOMATERIALS, 2008, 29 (12) :1739-1749
[9]   Injectable cryogel-based whole-cell cancer vaccines [J].
Bencherif, Sidi A. ;
Sands, R. Warren ;
Ali, Omar A. ;
Li, Weiwei A. ;
Lewin, Sarah A. ;
Braschler, Thomas M. ;
Shih, Ting-Yu ;
Verbeke, Catia S. ;
Bhatta, Deen ;
Dranoff, Glenn ;
Mooney, David J. .
NATURE COMMUNICATIONS, 2015, 6
[10]   Advances in the design of macroporous polymer scaffolds for potential applications in dentistry [J].
Bencherif, Sidi A. ;
Braschler, Thomas M. ;
Renaud, Philippe .
JOURNAL OF PERIODONTAL AND IMPLANT SCIENCE, 2013, 43 (06) :251-261