Composite pullulan-dextran polysaccharide scaffold with interfacial polyelectrolyte complexation fibers: A platform with enhanced cell interaction and spatial distribution

被引:31
作者
Cutiongco, Marie Francene Arnobit [1 ]
Tan, Ming Hao [1 ]
Ng, Martin Yoke Kuang [1 ]
Le Visage, Catherine [2 ]
Yim, Evelyn King Fai [1 ,3 ,4 ]
机构
[1] Natl Univ Singapore, Fac Engn, Dept Biomed Engn, Singapore 117575, Singapore
[2] INSERM, U698, Paris, France
[3] Natl Univ Singapore, Mechanobiol Inst Singapore, Singapore 117575, Singapore
[4] Natl Univ Singapore, Yong Loo Lin Sch Med, Dept Surg, Singapore 117575, Singapore
基金
英国医学研究理事会; 新加坡国家研究基金会;
关键词
Hydrogel; Chemical cross linking; Hybrid scaffold; ENDOTHELIAL PROGENITOR CELLS; GROWTH-FACTOR; EXTRACELLULAR-MATRIX; CONTROLLED-RELEASE; HYDROGELS; VEGF; MICROENVIRONMENTS; PROLIFERATION; BIOMATERIALS; DELIVERY;
D O I
10.1016/j.actbio.2014.06.029
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Hydrogels are highly preferred in soft tissue engineering because they recapitulate the hydrated extracellular matrix. Naturally derived polysaccharides, like pullulan and dextran, are attractive materials with which to form hydrophilic polymeric networks due to their non-immunogenic and non-antigenic properties. However, their inherent hydrophilicity prevents adherent cell growth. In this study, we modified pullulan-dextran scaffolds with interfacial polyelectrolyte complexation (IPC) fibers to improve their ability to support adherent cell growth. We showed that the pullulan-dextran-IPC fiber composite scaffold laden with extracellular matrix protein has improved cell adhesion and proliferation compared to the plain polysaccharide scaffold. We also demonstrated the zero-order release kinetics of the biologics bovine serum albumin and vascular endothelial growth factor (VEGF) incorporated in the composite scaffold. Lastly, we showed that the VEGF released from the composite scaffold retained its capacity to stimulate endothelial cell growth. The incorporation of IPC fibers in the pullulan-dextran hydrogel scaffold improved its functionality and biological activity, thus enhancing its potential in tissue engineering applications. (C) 2014 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
引用
收藏
页码:4410 / 4418
页数:9
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