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July 17, 2024Polymer-Plastics Technology and Materials

Introducing PCL-Based Electrospun Nanocomposite Wound Dressings: Synergistic Effects of Curcumin and Reduced Graphene Oxide

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Authors

SBSheida BarkhordariAHAli HamzehlouyMDMasoud Tavakoli Dare

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Overview

In vitro study demonstrates enhanced antibacterial and antioxidant activity in bacterial and cellular models, highlighting the potential of PCL-curcumin-RGO scaffolds for wound care.

Key Points

  • Inhibition zones reach up to 9.9 mm for S. aureus and 9.2 mm for E. coli, confirming potent antibacterial action from curcumin and reduced graphene oxide nanocomposites.
  • Assessment through MTT assays affirmed scaffold biocompatibility, while scanning electron microscopy and contact angle assays confirmed favorable nanofiber architecture.
  • Supports bioactive wound dressing design through 40% radical scavenging efficiency, though in vitro findings warrant further preclinical evaluation in animal models.

Cite This Study

Barkhordari et al. (2024) studied this question.

synapsesocial.com/papers/68e5fefbb6db64358759319bhttps://doi.org/10.1080/25740881.2024.2378096
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  1. 1Harnessing the power of polyol-based polyesters for biomedical innovations: synthesis, properties, and biodegradation2023 · 73 citations
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