Literature DB >> 11026638

Vascular cell responses to polysaccharide materials: in vitro and in vivo evaluations.

J M Chupa1, A M Foster, S R Sumner, S V Madihally, H W Matthew.   

Abstract

Chitosan has shown promise as a structural material for a number of tissue engineering applications. Similarly the glycosaminoglycans (GAGs) and their analogs have been known to exert a variety of biological activities. In this study we evaluated the potential of GAG-chitosan and dextran sulfate (DS)-chitosan complex materials for controlling the proliferation of vascular endothelial (EC) and smooth muscle cells (SMC). GAG-chitosan complex membranes were generated in vitro and seeded with human ECs or SMCs for culture up to 9d. In addition, porous chitosan and GAG-chitosan complex scaffolds were implanted subcutaneously in rats to evaluate the in vivo response to these materials. The results indicated that while chitosan alone supported cell attachment and growth, GAG-chitosan materials inhibited spreading and proliferation of ECs and SMCs in vitro. In contrast, DS-chitosan surfaces supported proliferation of both cell types. In vivo, heparin-chitosan and DS-chitosan scaffolds stimulated cell proliferation and the formation of a thick layer of dense granulation tissue. In the case of heparin scaffolds the granulation layer was highly vascularized. These results indicate that the GAG-chitosan materials can be used to modulate the proliferation of vascular cells both in vitro and in vivo.

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Year:  2000        PMID: 11026638     DOI: 10.1016/s0142-9612(00)00158-7

Source DB:  PubMed          Journal:  Biomaterials        ISSN: 0142-9612            Impact factor:   12.479


  23 in total

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5.  Collagen-binding peptidoglycans: a biomimetic approach to modulate collagen fibrillogenesis for tissue engineering applications.

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9.  Directionally Solidified Biopolymer Scaffolds: Mechanical Properties and Endothelial Cell Responses.

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Authors:  A Kroustalli; A E Zisimopoulou; S Koch; L Rongen; D Deligianni; S Diamantouros; G Athanassiou; M Kokozidou; D Mavrilas; S Jockenhoevel
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