Green Synthesis, Characterization, and Biological Evaluation of a Polyherbal-Based Chitosan-Fe₂O₃/ZnO Nanocomposite for Diabetic Wound Healing: In Vitro, In Silico, and In Vivo Study
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جامعة الوادي university of eloued
Abstract
Diabetic wound healing is a complex process often delayed by hyperglycemia, oxidative stress,
chronic inflammation, impaired angiogenesis, and defective tissue remodeling. This study aimed to
evaluate the wound-healing potential of a polyherbal extract prepared from Syzygium aromaticum L.
and Boswellia sacra, as well as Ch–Fe₂O₃/ZnO nanocomposite, in diabetic wound healing. The
aqueous polyherbal extract was prepared by maceration and analyzed for its phytochemical
composition, which revealed the presence of flavonoids, polyphenols, tannins, saponins, free
quinones, mucilage, terpenoids, and alkaloids. Quantitative analysis confirmed its richness in total
polyphenols and flavonoids. The Fe₂O₃/ZnO nanocomposite was synthesized and coated with
chitosan, and its characterization by UV–Visible, FTIR, XRD, and SEM confirmed the structural,
functional, and morphological characteristics of the final nanocomposite. In vitro results showed
antioxidant, anti-inflammatory, and antibacterial activities against Escherichia coli and
Staphylococcus aureus. The in silico study supported these effects through the interaction of
Syzygium aromaticum compounds with Keap1 and boswellic derivatives with COX-2, with
acceptable ADMET profiles. The in vivo study, performed using an alloxan-induced diabetic wound
model in rats, showed that the untreated diabetic group had delayed wound healing, increased
oxidative stress, and poor tissue repair. In contrast, treated groups showed improved wound closure,
decreased MDA levels, increased GSH levels, and better histological organization. The Ch–
Fe₂O₃/ZnO nanocomposite cream showed the best healing progression, with improved reepithelialization, collagen organization, fibroblast activity, vascularization, and skin regeneration.
Overall, the results suggest that the polyherbal extract and Ch–Fe₂O₃/ZnO nanocomposite contributed
to improving diabetic wound healing through antioxidant, anti-inflammatory, antibacterial, and
tissue-regenerative effects.
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master, 2026. DEPARTEMENT DE BIOLOGIE CELLULAIRE ET MOLECULAIRE. Faculté des Sciences de la Nature et de la Vie. Université d'El-Oued .