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Investigation of Tannic Acid Crosslinked PVA/PEI-Based Hydrogels as Potential Wound Dressings with Self-Healing and High Antibacterial Properties. | LitMetric

Investigation of Tannic Acid Crosslinked PVA/PEI-Based Hydrogels as Potential Wound Dressings with Self-Healing and High Antibacterial Properties.

Gels

Biomaterials, Energy, Photocatalysis, Enzyme Technology, Nano & Advanced Materials, Additive Manufacturing, Environmental Applications and Sustainability Research & Development Group (BIOENAMS R & D Group), Sakarya University, 54050 Sakarya, Türkiye.

Published: October 2024

AI Article Synopsis

  • - This study created hydrogels using PVA and PEI enhanced with tannic acid (TA) to treat burn wounds, and characterized these gels through various tests like SEM, FTIR, and antibacterial activity assessments.
  • - The addition of gentamicin (GEN) boosted the antibacterial effectiveness of the hydrogels, which also demonstrated strong hydrophilic traits, significant moisture retention, and high swelling capacity.
  • - The hydrogels showed promising potential for wound dressings, exhibiting improved mechanical strength and self-healing properties alongside effective drug release and swelling kinetics based on specific mathematical models.

Article Abstract

This study developed hydrogels containing different ratios of TA using polyvinyl alcohol (PVA) and polyethyleneimine (PEI) polymers crosslinked with tannic acid (TA) for the treatment of burn wounds. Various tests, such as scanning electron microscopy (SEM), Fourier transform infrared spectroscopy (FTIR), swelling, moisture retention, contact angle, tensile strength, the scratch test, antibacterial activity and the in vitro drug-release test, were applied to characterize the developed hydrogels. Additionally, the hydrogels were examined for cytotoxic properties and cell viability with the WST-1 test. TA improved both the self-healing properties of the hydrogels and showed antibacterial activity, while the added gentamicin (GEN) further increased the antibacterial activities of the hydrogels. The hydrogels exhibited good hydrophilic properties and high swelling capacity, moisture retention, and excellent antibacterial activity, especially to . In addition, the swelling and drug-release kinetics of hydrogels were investigated, and while swelling of hydrogels obeyed the pseudo-second-order modeling, the drug release occurred in a diffusion-controlled manner according to the Higuchi and Korsmeyer-Peppas models. These results show that PVA/PEI-based hydrogels have promising potential for wound dressings with increased mechanical strength, swelling, moisture retention, self-healing, and antibacterial properties.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11593458PMC
http://dx.doi.org/10.3390/gels10110682DOI Listing

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