Development and Characterization of a Hydrogel Containing Curcumin-Loaded Nanoemulsion for Enhanced In Vitro Antibacteria and In Vivo Wound Healing

Author:

Le Thi Thanh Ngoc1,Nguyen Thi Kieu Nhi1,Nguyen Van Minh2,Dao Thi Cam Minh1ORCID,Nguyen Hoai Bao Chau1,Dang Cong Thuan3,Le Thi Bao Chi4ORCID,Nguyen Thi Khanh Linh4,Nguyen Phuong Thao Tien3,Dang Le Hoang Nam5,Doan Van Minh6,Ho Hoang Nhan1ORCID

Affiliation:

1. Faculty of Pharmacy, University of Medicine and Pharmacy, Hue University, 6 Ngo Quyen, Hue 530000, Thua Thien Hue, Vietnam

2. Faculty of Odonto-Stomatology, University of Medicine and Pharmacy, Hue University, 6 Ngo Quyen, Hue 530000, Thua Thien Hue, Vietnam

3. Department of Histology, Embryology, Pathology, and Forensic, University of Medicine and Pharmacy, Hue University, 6 Ngo Quyen, Hue 530000, Thua Thien Hue, Vietnam

4. Department of Microbiology, University of Medicine and Pharmacy, Hue University, 6 Ngo Quyen, Hue 530000, Thua Thien Hue, Vietnam

5. Department of Anatomy and Surgical Training, University of Medicine and Pharmacy, Hue University, 6 Ngo Quyen, Hue 530000, Thua Thien Hue, Vietnam

6. Faculty of Traditional Medicine, University of Medicine and Pharmacy, Hue University, 6 Ngo Quyen, Hue 530000, Thua Thien Hue, Vietnam

Abstract

Curcumin (CUR) is a natural compound extracted from turmeric (Curcuma longa L.) used to cure acne, wound healing, etc. Its disadvantages, such as poor solubility and permeability, limit its efficacy. Nanoemulsion (NE)-based drug delivery systems have gained popularity due to their advantages. This study aimed to optimize a CUR-NE-based gel and evaluate its physicochemical and biological properties. A NE was prepared using the catastrophic phase inversion method and optimized using the Design Expert 12.0 software. The CUR-NE gel was characterized in terms of visual appearance, pH, drug release, antibacterial and wound healing effects. The optimal formulation contained CUR, Capryol 90 (oil), Labrasol:Cremophor RH40 (1:1) (surfactants), propylene glycol (co-surfactant), and water. The NE had a droplet size of 22.87 nm and a polydispersity index of 0.348. The obtained CUR-NE gel had a soft, smooth texture and a pH of 5.34 ± 0.05. The in vitro release of CUR from the NE-based gel was higher than that from a commercial gel with nanosized CUR (21.68 ± 1.25 µg/cm2, 13.62 ± 1.63 µg/cm2 after 10 h, respectively). The CUR-NE gel accelerated in vitro antibacterial and in vivo wound healing activities as compared to other CUR-loaded gels. The CUR-NE gel has potential for transdermal applications.

Funder

Hue University

Publisher

MDPI AG

Subject

Chemistry (miscellaneous),Analytical Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Molecular Medicine,Drug Discovery,Pharmaceutical Science

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