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May 26, 2026Journal of Polymers and the Environment0 citationsOpen Access

Electrospun Poly(ε-caprolactone)/Poly(ethylene glycol) Nanofibers Loaded with Artemisia absinthium Extract for Wound Healing Properties

SPSibel Selçuk Pekdemi̇rMPMustafa Ersin PekdemirEBEmre Birhanlı

Key Points

  • This research aims to develop a multifunctional nanofiber scaffold using Artemisia absinthium extract to enhance wound healing properties.
  • PCL/PEG nanofibers were electrospun with varying concentrations (5-30 wt%) of Artemisia absinthium extract.
  • Antibacterial assays and cytotoxicity tests were performed to assess the effectiveness and safety of the scaffolds.
  • In vitro wound healing tests measured the impact of the nanofibers on fibroblast proliferation.
  • Nanofibers with 10 wt% extract exhibited the highest antioxidant activity and improved fibroblast proliferation.
  • Concentration-dependent antimicrobial effects were observed, particularly effective against Staphylococcus aureus.
  • Fibers loaded with 20 wt% extract showed reduced cell viability, indicating a need for careful concentration management.

Abstract

Abstract The lack of intrinsic antibacterial and antioxidant properties in conventional polymer-based wound dressings limits their effectiveness in tissue regeneration. This study presents a novel multifunctional electrospun PCL/PEG nanofiber scaffold incorporating Artemisia absinthium extract (5–30 wt%), a bioactive plant agent not previously integrated into polymeric wound dressings. ATR-IR and thermal analyses confirmed successful incorporation of the extract without disrupting the structural integrity of the fibers. The extract increased fiber hydrophilicity and introduced strong antioxidant activity, reaching its highest effect at 10 wt% loading. Antibacterial assays revealed concentration-dependent inhibition. At non-toxic concentrations, the produced materials did not exhibit antibacterial effects. However, they demonstrated improved antimicrobial efficacy compared to neat PCL/PEG fibers, particularly against Staphylococcus aureus . Cytotoxicity and in vitro wound healing tests showed that ≤ 10 wt% extract maintained excellent biocompatibility and enhanced fibroblast proliferation, whereas ≥ 20 wt% reduced cell viability. These findings clearly demonstrated that integrating Artemisia absinthium into nanofiber scaffolds offers an advantageous and biologically active alternative material by simultaneously providing antioxidant and biocompatible performance.

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Cite This Study

Pekdemi̇r et al. (2026) studied this question.

synapsesocial.com/papers/6a153a2eb5d9c58d83e8cfc6https://doi.org/10.1007/s10924-026-03846-y
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