IN VIVO EVALUATION OF THE WOUND-HEALING POTENTIAL OF NANOZINC GEL CONTAINING ZINC OXIDE NANOPARTICLES

Mualliflar

  • Maksudova Firuza Khurshidovna Tashkent, Uzbekistan Muallif
  • Shermatova Iroda Bakhtiyor kizi Tashkent Pharmaceutical Institute, Tashkent, Uzbekistan Muallif
  • Rakhimberganova Zilola Makhsudjon kizi Tashkent, Uzbekistan Muallif
  • Bakhtiyorova Ziyodakhon Bakhromjon kizi Tashkent, Uzbekistan Muallif
  • Alimdjanova Lola Ilkhamovna Tashkent, Uzbekistan Muallif
  • Shamsutdinova Madina Rinatovna Tashkent Pharmaceutical Institute, Tashkent, Uzbekistan Muallif

;

NanoZinc gel; zinc oxide nanoparticles; wound healing; tissue regeneration; in vivo; topical formulation.

Abstrak

The development of topical formulations containing zinc oxide nanoparticles has attracted considerable attention because of their antimicrobial, anti-inflammatory, and regenerative properties. The present study aimed to evaluate the wound-healing efficacy of NanoZinc gel in an in vivo excisional wound model. The study was performed using fifteen healthy white mice randomly divided into control and treatment groups. Full-thickness excisional skin wounds (1 cm in diameter) were created under aseptic conditions. Animals in the treatment group received topical NanoZinc gel (0.02%, 2 mg/kg), whereas the control group was treated with sunflower oil. Wound healing was monitored for 14 days by measuring wound area using ImageJ software. Statistical analysis was performed using one-way ANOVA with GraphPad Prism 8.0 (p < 0.05). NanoZinc gel significantly accelerated wound contraction compared with the control group. Faster epithelialization and granulation tissue formation were observed from day 5 onward, with almost complete wound closure by day 9. No signs of skin irritation or local toxicity were detected. The obtained findings indicate that NanoZinc gel possesses pronounced wound-healing activity and represents a promising topical formulation for further preclinical and clinical investigations

Iqtiboslar

Lin PH, Sermersheim M, Li H, Lee PHU, Steinberg SM, Ma J. Zinc in Wound Healing Modulation. Nutrients. 2018;10(1):16. https://doi.org/10.3390/nu10010016

Pino P, Bosco F, Mollea C, Onida B. Antimicrobial Nano-Zinc Oxide Biocomposites for Wound Healing Applications: A Review. Pharmaceutics. 2023;15(3):970. https://doi.org/10.3390/pharmaceutics15030970

Xiao D, Huang Y, Fang Z, Liu D, Wang Q, Xu Y, Li P, Li J. Zinc oxide nanoparticles for skin wound healing: A systematic review from the perspective of disease types. Materials Today Bio. 2025;34:102221. https://doi.org/10.1016/j.mtbio.2025.102221

Mondal I.H., Islam M.M., Ahmed F. Enhanced wound healing with biogenic zinc oxide nanoparticle-incorporated carboxymethyl cellulose/polyvinylpyrrolidone nanocomposite hydrogels. Biomaterials Science. 2024. https://doi.org/10.1039/D4BM01027B

Rahman HS, Othman HH, Abdullah R, Shujaa Edin HYA, AL-Haj NA. Beneficial and toxicological aspects of zinc oxide nanoparticles in animals. Veterinary Medicine and Science. 2022;8(4):1769–1779. https://doi.org/10.1002/vms3.814

Yampolsky M, Bachelet I, Fuchs Y. Reproducible strategy for excisional skin-wound-healing studies in mice. Nature Protocols. 2024;19(1):184–206. https://doi.org/10.1038/s41596-023-00899-4

Sokal RR, Rohlf FJ. Biometry: The Principles and Practice of Statistics in Biological Research. 4th ed. New York: W.H. Freeman; 2012.

##submission.downloads##

Nashr qilingan

2026-04-05

Iqtibos keltirish tartibi

Maksudova, F., Shermatova , I., Rakhimberganova , Z., Bakhtiyorova , Z., Alimdjanova , L., & Shamsutdinova , M. (2026). IN VIVO EVALUATION OF THE WOUND-HEALING POTENTIAL OF NANOZINC GEL CONTAINING ZINC OXIDE NANOPARTICLES. Yevroosiyo Akademik Tadqiqotlar Jurnali, 6(4 Part 2), 18-22. https://www.in-academy.uz/index.php/EJAR/article/view/55259
Innovative Academy RSC
Article metrics Views and PDF downloads
1 Views
0 Downloads