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Chitosan based metallic nanocomposite scaffolds as antimicrobial wound dressings 被引量:12
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作者 Annapoorna Mohandas s.deepthi +1 位作者 Raja Biswas R.Jayakumar 《Bioactive Materials》 SCIE 2018年第3期267-277,共11页
Chitosan based nanocomposite scaffolds have attracted wider applications in medicine,in the area of drug delivery,tissue engineering and wound healing.Chitosan matrix incorporated with nanometallic components has imme... Chitosan based nanocomposite scaffolds have attracted wider applications in medicine,in the area of drug delivery,tissue engineering and wound healing.Chitosan matrix incorporated with nanometallic components has immense potential in the area of wound dressings due to its antimicrobial properties.This review focuses on the different combinations of Chitosan metal nanocomposites such as Chitosan/nAg,Chitosan/nAu,Chitosan/nCu,Chitosan/nZnO and Chitosan/nTiO2 towards enhancement of healing or infection control with special reference to the antimicrobial mechanism of action and toxicity. 展开更多
关键词 Antimicrobial Chitosan nanocomposities SILVER Zinc oxide Gold Copper Wound healing
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Alginate nanobeads interspersed fibrin network as in situ forming hydrogel for soft tissue engineering 被引量:5
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作者 s.deepthi R.Jayakumar 《Bioactive Materials》 SCIE 2018年第2期194-200,共7页
Hydrogels are a class of materials that has the property of injectability and in situ gel formation.This property of hydrogels is manipulated in this study to develop a biomimetic bioresorbable injectable system of al... Hydrogels are a class of materials that has the property of injectability and in situ gel formation.This property of hydrogels is manipulated in this study to develop a biomimetic bioresorbable injectable system of alginate nanobeads interspersed in fibrin network.Alginate nanobeads developed by calcium cross-linking yielded a size of 200e500 nm.The alginate nanobeads fibrin hydrogel was formed using dual syringe apparatus.Characterization of the in situ injectable hydrogel was done by SEM,FTIR and Rheometer.The developed hydrogel showed mechanical strength of 19 kPa which provides the suitable compliance for soft tissue engineering.Cytocompatibility studies using human umbilical cord blood derived mesenchymal stem cells showed good attachment,proliferation and infiltration within the hydrogel similar to fibrin gel.The developed in situ forming hydrogel could be a suitable delivery carrier of stem cells for soft tissue regeneration. 展开更多
关键词 Alginate nanobeads Fibrin hydrogel Soft tissue engineering
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