Scaffolds based on chitosan/pectin thermosensitive hydrogels containing gold nanoparticles

•Chitosan/pectin/gold nanoparticles (CS/Pec/AuNPs) composites were successfully prepared at different AuNPs levels.•In general, all the samples were extremely cytocompatible toward several cell types.•Scaffold materials were developed. Thermosensitive hydrogels based on chitosan/pectin (CS/Pec) and...

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Veröffentlicht in:International journal of biological macromolecules 2017-09, Vol.102, p.1186-1194
Hauptverfasser: Tentor, Fábio R., de Oliveira, Jean H., Scariot, Débora B., Lazarin-Bidóia, Danielle, Bonafé, Elton G., Nakamura, Celso V., Venter, Sandro A.S., Monteiro, Johny P., Muniz, Edvani C., Martins, Alessandro F.
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Sprache:eng
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Zusammenfassung:•Chitosan/pectin/gold nanoparticles (CS/Pec/AuNPs) composites were successfully prepared at different AuNPs levels.•In general, all the samples were extremely cytocompatible toward several cell types.•Scaffold materials were developed. Thermosensitive hydrogels based on chitosan/pectin (CS/Pec) and CS/Pec/gold nanoparticles (CS/Pec/AuNPs) were successfully prepared with different AuNP levels. Using a tilting method, gelation temperature was demonstrated to decrease when the amount of AuNPs increased and pectin concentrations decreased. The presence of AuNPs in the CS/Pec composite was evaluated via WAXS and UV–vis techniques, while SEM analysis assessed the average size of pores (350–600μm). All samples were extremely cytocompatible with many cell types, such as normal kidney epithelial cells (VERO cells), epithelial colorectal adenocarcinoma cells (HT-29 cells), HPV-16 positive human cervical tumour cells (SiHa cells), kidney epithelial cells (LLCMK2 cells) and murine macrophage cells (J774A1 cells). Cell viability assays using the MTT method upon mouse preosteoblastic cells (MC3T3-E1 cells) showed that CS/Pec and CS/Pec/AuNPs composites had the potential to foster proliferation and growth of bone cells, making them possible stimulators for reconstruction of bone tissues.
ISSN:0141-8130
1879-0003
DOI:10.1016/j.ijbiomac.2017.04.106