Chitosan-based topical formulation integrated with green-synthesized silver nanoparticles utilizing Camellia sinensis leaf extracts: A promising approach for managing infected wounds

Mohammad Zaki Ahmad, Abdulhakeem Mohammed Saeed, Osman A. E. Elnoubi, Ali S. Alasiri,Basel A. Abdel-Wahab,Abdulsalam A. Alqahtani, Kalyani Pathak,Riya Saikia, Bibhuti Bhusan Kakoti,Aparoop Das

INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES(2024)

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摘要
This study explores the eco-friendly biosynthesis of silver nanoparticles (AgNPs) utilizing Camellia sinensis leaf extract. We assess their antioxidant and antibacterial properties. Furthermore, we impregnated AgNPs into 2 % chitosan (CHS) gel and assessed their wound-healing potential in Escherichia coli and Staphylococcus aureus infected wounds. Optimized AgNPs demonstrated a mean particle size of 36.90 +/- 1.22 nm and a PDI of 0.049 +/- 0.001. Green-synthesized AgNPs exhibited enhanced free radical inhibition (IC50: 31.45 mu g/mL, 34.01 mu g/mL, 27.40 mu g/mL) compared to leaf extract (IC50: 52.67 mu g/mL, 59.64 mu g/mL, 97.50 mu g/mL) in DPPH, hydrogen peroxide, and nitric oxide free radical scavenging assays, respectively. The MIC/MBC values of AgNPs against E. coli and S. aureus were 5 ppm/ 7.5 ppm and 10 ppm/ 15 ppm, respectively. Furthermore, our study showed that green-synthesized AgNPs at MIC significantly reduced the biofilm production of E. coli (70.37 %) and S. aureus (67.40 %). The CHS/AgNPs gel exhibited potent wound healing activities, comparable to a commercial cream with the re-epithelialization period of 8.16 +/- 0.75. Histological analysis demonstrated enhanced skin regeneration with a thicker epidermal layer, well-defined papillary dermal structure, and organized collagen fibers. In summary, these findings hold promise for addressing bacterial infections, particularly those associated with biofilms-related wound infections.
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关键词
Chitosan,Green synthesis,Silver nanoparticles,Wound infection,Wound healing
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