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1.
Int J Biol Macromol ; 207: 493-506, 2022 May 15.
Article de Anglais | MEDLINE | ID: mdl-35276297

RÉSUMÉ

Biomimetic hydrogels composed of natural polysaccharides have invariably blossomed as niche biomaterials in tissue engineering applications. The prospects of creating an extracellular matrix (ECM)-like milieu from such hydrogels has garnered considerable importance. In this study, we have fabricated bioscaffolds comprising dialdehyde alginate and xanthan gum and explored their potential use in tissue regeneration. The fabricated scaffolds displayed an interconnected porous network structure that is highly desirable for the aforesaid application. The scaffolds were endowed with good mechanical properties, thermostability, protein adsorption efficacy and degradability. Curcumin-loaded hydrogels exhibited appreciable antibacterial activity against E. coli. In vitro cytocompatibility studies revealed that the scaffolds promoted adhesion and proliferation of 3T3 fibroblast cells. The Western blot analysis of p53 gene indicated no growth arrest or apoptosis in 3T3 cells thus, signifying the non-toxic nature of the scaffolds. Furthermore, the ECM formation was confirmed via SDS-PAGE analysis. The overall results clearly validated these scaffolds as effectual biomaterials for tissue engineering applications.


Sujet(s)
Hydrogels , Ingénierie tissulaire , Alginates/composition chimique , Animaux , Matériaux biocompatibles/composition chimique , Matériaux biocompatibles/pharmacologie , Escherichia coli , Hydrogels/composition chimique , Hydrogels/pharmacologie , Souris , Polyosides bactériens/composition chimique , Polyosides bactériens/pharmacologie , Ingénierie tissulaire/méthodes , Structures d'échafaudage tissulaires/composition chimique
2.
Int J Biol Macromol ; 101: 889-895, 2017 Aug.
Article de Anglais | MEDLINE | ID: mdl-28366854

RÉSUMÉ

Despite its crucial role in directing cell fate in healthy and diseased tissues, improvements in physical-chemical properties and biocompatibility of type-I collagen are still needed. In this report, we described combined and facile method to modify collagen. The collagen film was first modified by procyanidins solution, in which, then subjected to further crosslinked by dialdehyde alginate, resulting in collagen-procyanidins-dialdehyde alginate film. The properties of the crosslinked collagen films were investigated and the results were discussed. Results from differential scanning calorimetry and thermo gravimetric analysis suggested that the thermal stabilities of the collagen-procyanidins-dialdehyde alginate film were significantly improved. The mechanical properties of collagen-procyanidins-dialdehyde alginate film in terms of elongation at break and tensile strength increased approximately 2-fold and 3-fold, respectively compare to pure collagen film. In addition, the resistance to collagenase degradation of collagen-procyanidins-dialdehyde alginate film was remarkably promoted. The results from methyltetrazolium assay and confocal laser scanning microscopy showed that no cytotoxicity of collagen film was introduced by the combined crosslinking method. Thus, the novel combined by procyanidins-dialdehyde alginate crosslinking method shown in this study provided a non-toxic and efficient crosslinking method that improved various properties of collagen film, which has great potential applications in biomedical materials.


Sujet(s)
Aldéhydes/composition chimique , Matériaux biocompatibles/composition chimique , Collagène de type I/composition chimique , Réactifs réticulants/composition chimique , Polyphénols/composition chimique , Biflavonoïdes/composition chimique , Matériaux biocompatibles/toxicité , Catéchine/composition chimique , Lignée cellulaire , Survie cellulaire/effets des médicaments et des substances chimiques , Collagène de type I/toxicité , Phénomènes mécaniques , Proanthocyanidines/composition chimique
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