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June 1, 2026ACS Applied Polymer Materials0 citations

Electrospun Drug-Eluting pH-Responsive Nanofiber Yarns as Surgical Sutures for Wound Healing

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JCJiawei ChenCFChanghao FangXXXianyi Xia

Key Points

  • This work aims to develop smart drug-eluting surgical sutures to combat surgical site infections using electrospun nanofibers.
  • Produced PVDF-HFP composite yarns containing 1 wt% cellulose nanocrystal via electrospinning
  • Yarns loaded with crystal violet and levofloxacin to evaluate drug release and antimicrobial properties
  • Assessed drug release kinetics using the Ritger–Peppas model
  • Yarns demonstrated pH-responsive drug release with sustained stability under suitable conditions for wound healing
  • Antimicrobial efficacy shown by loaded levofloxacin demonstrating strong activity against pathogens
  • Cytocompatibility tests indicated potential for safe use in clinical applications

Abstract

As surgical site infection poses a critical healthcare challenge, the demand for smart sutures loaded with antibacterial drugs emerges. In this work, poly(vinylidene fluoride-co-hexafluoropropylene) PVDF-HFP composite yarns containing 1 wt% cellulose nanocrystal (CNC) are produced via yarn electrospinning and loaded with crystal violet (CV) as a model drug. The produced yarns exhibit pH-responsive drug release performance, with sustained structural stability in pH and temperature environment suitable for wound healing. The drug release profile conforms to the Ritger–Peppas model, suggesting that Fickian diffusion dominates the release kinetics. After being loaded with levofloxacin, the PVDF-HFP/CNC yarns exhibit strong antimicrobial activity and cytocompatibility, emphasizing their potential for advancing antibacterial wound healing in suture applications.

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Cite This Study

Chen et al. (2026) studied this question.

synapsesocial.com/papers/6a1d216202fbce9130637737https://doi.org/10.1021/acsapm.6c00702
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