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April 12, 2026Gels0 citationsOpen Access

Short Eggshell Membrane Nanofibers–Chitosan Hydrogel with Dual-Functional Hemostasis and Shape Memory for Non-Compressible Wounds

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SZShuang ZhaoWJW. JiangYGYating Gou

Key Points

  • The aim is to enhance hemostatic effectiveness and mechanical properties of hydrogels for managing deep wounds.
  • Developed a chitosan hydrogel reinforced with short eggshell membrane nanofibers.
  • Crosslinked the hydrogel with citric acid.
  • Characterized the mechanical and biological properties of the hydrogel.
  • Achieved a 63% increase in mechanical strength compared to pure CCS hydrogel.
  • Demonstrated a two-fold improvement in shape memory capability.
  • Noted a 25.31% reduction in hemolysis and over 2% higher cytocompatibility.
  • Showed more than 48% greater hemostatic efficiency.

Abstract

Effective hemostasis in deep and irregular wounds remains a critical clinical challenge. To address this, we developed a bioresorbable chitosan composite hydrogel reinforced with short eggshell membrane (ESM) nanofibers, which were obtained through cryogenic grinding. The resulting ESM/CCS hydrogel, crosslinked with citric acid, exhibited significantly enhanced properties compared to pure CCS hydrogel, including a 63% increase in mechanical strength, a two-fold improvement in shape memory, a 25.31% reduction in hemolysis, over 2% higher cytocompatibility, and more than 48% greater hemostatic efficiency. Structural characterization confirmed the successful integration of bioactive chitosan with collagen mimetic ESM nanofibers. This biomimetic approach synergistically combines mechanical reinforcement with biological functionality, highlighting its strong potential as an advanced hemostatic dressing for complex wound management.

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Cite This Study

Zhao et al. (2026) studied this question.

synapsesocial.com/papers/69db37774fe01fead37c56f2https://doi.org/10.3390/gels12040324
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