Particulate 3D Hydrogels of Silk Fibroin-Pluronic to Deliver Curcumin for Infection-Free Wound Healing

Author:

Khodaei Azin123,Johari Narges4ORCID,Jahanmard Fatemeh15,Cecotto Leonardo1,Khosravimelal Sadjad6ORCID,Madaah Hosseini Hamid Reza3ORCID,Bagheri Reza3,Samadikuchaksaraei Ali6ORCID,Amin Yavari Saber17ORCID

Affiliation:

1. Department of Orthopedics, University Medical Center Utrecht, 3584 CX Utrecht, The Netherlands

2. Institute for Nanoscience and Nanotechnology, Sharif University of Technology, Tehran 14588-89694, Iran

3. Department of Materials Science and Engineering, Sharif University of Technology, Tehran 14588-89694, Iran

4. Materials Engineering Group, Golpayegan College of Engineering, Isfahan University of Technology, Golpayegan 87717-67498, Iran

5. Utrecht Institute for Pharmaceutical Sciences, Department of Pharmaceutics, Faculty of Science, Utrecht University, 3584 CG Utrecht, The Netherlands

6. Department of Medical Biotechnology, Faculty of Allied Medicine, Iran University of Medical Sciences, Tehran 14496-14535, Iran

7. Regenerative Medicine Utrecht, Utrecht University, 3584 CT Utrecht, The Netherlands

Abstract

Skin is the largest protective tissue of the body and is at risk of damage. Hence, the design and development of wound dressing materials is key for tissue repair and regeneration. Although silk fibroin is a known biopolymer in tissue engineering, its degradation rate is not correlated with wound closure rate. To address this disadvantage, we mimicked the hierarchical structure of skin and also provided antibacterial properties; a hydrogel with globular structure consisting of silk fibroin, pluronic F127, and curcumin was developed. In this regard, the effect of pluronic and curcumin on the structural and mechanical properties of the hydrogel was studied. The results showed that curcumin affected the particle size, crystallinity, and ultimate elongation of the hydrogels. In vitro assays confirmed that the hydrogel containing curcumin is not cytotoxic while the diffused curcumin and pluronic provided a considerable bactericidal property against Methicillin-resistant Staphylococcus aureus. Interestingly, presence of pluronic caused more than a 99% reduction in planktonic and adherent bacteria in the curcumin-free hydrogel groups. Moreover, curcumin improved this number further and inhibited bacteria adhesion to prevent biofilm formation. Overall, the developed hydrogel showed the potential to be used for skin tissue regeneration.

Publisher

MDPI AG

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