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Novel Curcumin-Encapsulated α-Tocopherol Nanoemulsion System and Its Potential Application for Wound Healing in Diabetic Animals

OBJECTIVE: This project was aimed at formulating a novel nanoemulsion system and evaluating it for open incision wound healing in diabetic animals. METHODS: The nanoemulsions were characterized for droplet size and surface charge, drug content, antioxidant and antimicrobial profiling, and wound heal...

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Detalles Bibliográficos
Autores principales: Ali, Muhammad, Khan, Nauman Rahim, Subhan, Zakia, Mehmood, Saima, Amin, Adnan, Rabbani, Imran, -Rehman, Fazal-ur, Basit, Hafiz Muhammad, Syed, Haroon Khalid, Khan, Ikram Ullah, Khan, Muhammad Shuaib, Khattak, Sehrish
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9499807/
https://www.ncbi.nlm.nih.gov/pubmed/36158895
http://dx.doi.org/10.1155/2022/7669255
Descripción
Sumario:OBJECTIVE: This project was aimed at formulating a novel nanoemulsion system and evaluating it for open incision wound healing in diabetic animals. METHODS: The nanoemulsions were characterized for droplet size and surface charge, drug content, antioxidant and antimicrobial profiling, and wound healing potential in diabetic animals. The skin samples excised were also analyzed for histology, mechanical strength, and vibrational and thermal analysis. RESULTS: The optimized nanoemulsion (CR-NE-II) exhibited droplet size of26.76 ± 0.9 nm with negative surface charge (−10.86 ± 1.06 mV), was homogenously dispersed with drug content of68.05 ± 1.2%, released almost82.95 ± 2.2%of the drug within first 2 h of experiment with synergistic antioxidant (95 ± 2.1%) and synergistic antimicrobial activity against selected bacterial strains in comparison to blank nanoemulsion, and promoted significantly fast percent reepithelization (96.47%). The histological, vibrational, thermal, and strength analysis of selected skin samples depicted a uniform and even distribution of collagen fibers which translated into significant increase in strength of skin samples in comparison to the control group. CONCLUSIONS: The optimized nanoemulsion system significantly downregulated the oxidative stress, enhanced collagen deposition, and precluded bacterial contamination of wound, thus accelerating the skin tissue regeneration process.