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Modified gelatin/iron- based metal-organic framework nanocomposite hydrogel as wound dressing: Synthesis, antibacterial activity, and Camellia sinensis release.

Authors :
Hezari, Sepideh
Olad, Ali
Dilmaghani, Azita
Source :
International Journal of Biological Macromolecules. Oct2022, Vol. 218, p488-505. 18p.
Publication Year :
2022

Abstract

A new kind of Camellia sinensis -loaded nanocomposite hydrogel based on modified gelatin/iron-metal-organic framework was developed as an antibacterial wound dressing. Gelatin as a biocompatible natural polymer was modified with methacrylate anhydride to produce gelatin methacrylate. Thereafter, acrylic acid and acrylamide were grafted on gelatin methacrylate during an aqueous polymerization process. To enhance the porosity, mechanical strength, and drug loading capability of the hydrogel and reduce its toxicity, iron- based metal-organic framework was incorporated within the hydrogel. To add more functionality to the final wound dressing, Camellia sinensis , an antibacterial herbal drug was loaded on the hydrogel. The structural and chemical properties of prepared nanocomposite hydrogel were investigated by FTIR, XRD, SEM, and TGA techniques. The incorporation of iron-based metal-organic framework within the hydrogel matrix led to an increase in its water absorption value from 400.10 to 547.96 (g/g). The release study of Camellia sinensis (CS) extract from the prepared nanocomposite hydrogel exhibited a sustained release manner. The antibacterial test revealed the nanocomposite hydrogel contain extract has an effective antibacterial function against " Bacillus serous ", " Staphylococcus aureus ", " Streptococcus mutans "," Escherichia coli ", " Klebsiella pneumoniae ", and " Pseudomonas aeruginosa " bacteria. Therefore, the synthesized nanocomposite is a good candidate as an antibacterial hydrogel wound dressing.. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
01418130
Volume :
218
Database :
Academic Search Index
Journal :
International Journal of Biological Macromolecules
Publication Type :
Academic Journal
Accession number :
159028285
Full Text :
https://doi.org/10.1016/j.ijbiomac.2022.07.150