Injectable Nanocurcumin-Formulated Chitosan-g-Pluronic Hydrogel Exhibiting a Great Potential for Burn Treatment

Author:

Dang Le Hang12,Nguyen Thi Hiep3ORCID,Tran Ha Le Bao4ORCID,Doan Vu Nguyen4,Tran Ngoc Quyen156ORCID

Affiliation:

1. Institute of Research and Development, Duy Tan University, Da Nang 550000, Vietnam

2. School of Biotechnology, International University, Vietnam National University, Hochiminh City 70000, Vietnam

3. Biomedical Engineering Department, International University, Vietnam National University, Hochiminh City 70000, Vietnam

4. University of Science, Vietnam National University, Hochiminh City 700000, Vietnam

5. Graduate School of Science and Technology, Vietnam Academy of Science and Technology (VAST), 1A TL29, District 12, Hochiminh City 700000, Vietnam

6. Institute of Applied Materials Science, Vietnam Academy of Science and Technology (VAST), 1A TL29, District 12, Hochiminh City 700000, Vietnam

Abstract

Burn wound healing is a complex multifactorial process that relies on coordinated signaling molecules to succeed. Curcumin is believed to be a potent antioxidant and anti-inflammatory agent; therefore, it can prevent the prolonged presence of oxygen free radicals which is a significant factor causing inhabitation of optimum healing process. This study describes an extension of study about the biofunctional nanocomposite hydrogel platform that was prepared by using curcumin and an amphiphilic chitosan-g-pluronic copolymer specialized in burn wound healing application. This formular (nCur-CP, nanocomposite hydrogel) was a free-flowing sol at ambient temperature and instantly converted into a nonflowing gel at body temperature. In addition, the storage study determined the great stability level of nCur-CP in long time using UV-Vis and DLS. Morphology and distribution of nCur in its nanocomposite hydrogels were observed by SEM and TEM, respectively. In vitro studies suggested that nCur-CP exhibited well fibroblast proliferation and ability in antimicrobacteria. Furthermore, second- and third-degree burn wound models were employed to evaluate the in vivo wound healing activity of the nCur-CP. In the second-degree wound model, the nanocomposite hydrogel group showed a higher regenerated collagen density and thicker epidermis layer formation. In third degree, the nCur-CP group also exhibited enhancement of wound closure. Besides, in both models, the nanocomposite material-treated groups showed higher collagen content, better granulation, and higher wound maturity. Histopathologic examination also implied that the nanocomposite hydrogel based on nanocurcumin and chitosan could enhance burn wound repair. In conclusion, the biocompatible and injectable nanocomposite scaffold might have great potential to apply for wound healing.

Funder

Vietnam Academy of Science and Technology

Publisher

Hindawi Limited

Subject

Health Informatics,Biomedical Engineering,Surgery,Biotechnology

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