Engineering a sprayable and elastic hydrogel adhesive with antimicrobial properties for wound healing

被引:468
作者
Annabi, Nasim [1 ,2 ,3 ]
Rana, Devyesh [4 ]
Sani, Ehsan Shirzaei [1 ]
Portillo-Lara, Roberto [1 ,5 ]
Gifford, Jessie L. [4 ]
Fares, Mohammad M. [1 ]
Mithieux, Suzanne M. [6 ,7 ]
Weiss, Anthony S. [6 ,7 ,8 ]
机构
[1] Northeastern Univ, Dept Chem Engn, Boston, MA 02115 USA
[2] Harvard Med Sch, Brigham & Womens Hosp, Biomat Innovat Ctr, Boston, MA 02115 USA
[3] MIT, Harvard Mit Div Hlth Sci & Technol, Cambridge, MA 02139 USA
[4] Northeastern Univ, Dept Bioengn, Boston, MA 02115 USA
[5] Tecnol Monterrey, Ctr Biotecnol FEMSA, Monterrey 64700, NL, Mexico
[6] Univ Sydney, Charles Perkins Ctr, Sch Life & Environm Sci, Sydney, NSW, Australia
[7] Univ Sydney, Charles Perkins Ctr, Sydney, NSW, Australia
[8] Univ Sydney, Bosch Inst, Sydney, NSW, Australia
基金
英国医学研究理事会; 澳大利亚研究理事会;
关键词
Wound healing; MeTro; GelMA; Antimicrobial hydrogels; Tissue adhesive; CROSS-LINKING; DNA-DAMAGE; PEPTIDES; PHOTOPOLYMERIZATION; CYTOCOMPATIBILITY; NANOPARTICLES; MECHANISMS; CHALLENGES; POLYMERS; BACTERIA;
D O I
10.1016/j.biomaterials.2017.05.011
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
Hydrogel-based bioadhesives have emerged as alternatives for sutureless wound closure, since they can mimic the composition and physicochemical properties of the extracellular matrix. However, they are often associated with poor mechanical properties, low adhesion to native tissues, and lack of antimicrobial properties. Herein, a new sprayable, elastic, and biocompatible composite hydrogel, with broadspectrum antimicrobial activity, for the treatment of chronic wounds is reported. The composite hydrogels were engineered using two ECM-derived biopolymers, gelatin methacryloyl (GelMA) and methacryloyl-substituted recombinant human tropoelastin (MeTro). MeTro/GelMA composite hydrogel adhesives were formed via visible light-induced crosslinking. Additionally, the antimicrobial peptide Tet213 was conjugated to the hydrogels, instilling antimicrobial activity against Gram (+) and (-) bacteria. The physical properties (e.g. porosity, degradability, swellability, mechanical, and adhesive properties) of the engineered hydrogel could be fine-tuned by varying the ratio of MeTro/GelMA and the final polymer concentration. The hydrogels supported in vitro mammalian cellular growth in both two-dimensional and three dimensional cultures. The subcutaneous implantation of the hydrogels in rats confirmed their biocompatibility and biodegradation in vivo. The engineered MeTro/GelMA-Tet213 hydrogels can be used for sutureless wound closure strategies to prevent infection and promote healing of chronic wounds. (C) 2017 Elsevier Ltd. All rights reserved.
引用
收藏
页码:229 / 243
页数:15
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