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May 29, 2026Small Structures0 citationsOpen Access

Dual‐Network Reconfigurable Powder Adhesive With Bidirectional Synergy: Concurrent Reinforcement of Tissue Sealing and Coagulation for Hemostatic Tissue Repair

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WZWei ZhangHSHuarong ShaoLWLanqing Wang

Key Points

  • The aim is to develop an adhesive that improves tissue sealing and coagulation during healing processes.
  • Developed mechano‐adaptive PAA‐NHS/PEI/Fibrin powder adhesive with dual‐network architecture.
  • Tested the adhesive's performance on biological tissues under controlled injury models.
  • Evaluated the adhesive's sealing capacity and hemostatic efficacy compared to conventional products.
  • The adhesive achieved a burst pressure of 180.7 mmHg for sealing.
  • Demonstrated accelerated hemostatic efficacy in rat tail and liver injury models compared to conventional products.
  • Significantly enhanced posthemostasis tissue repair processes.

Abstract

Current tissue adhesives struggle with wet adhesion and phased treatment during coagulation‐healing transitions. Here, we developed a mechano‐adaptive PAA‐NHS/PEI/Fibrin (PNPF) powder adhesive featuring a dual‐network architecture, integrating a polyelectrolyte matrix (PAA‐NHS/PEI) and fibrin network through chemical linkages and thrombin activation, which displayed remodeling ability after fragmentation of the network. Benefitting from the combination of the two networks, PNPF powder adhesive exhibited water‐absorbent self‐gelation capability and bioactive properties, encompassing both procoagulant and prohealing abilities. More concretely, the powder adhesive exhibited ultrafast and robust sealing on biological tissues via interfacial dehydration and interface coupling, with the burst pressure achieving 180.7 mmHg. By integrating its superior coagulation‐enhancing properties, the PNPF powder adhesive demonstrated notably accelerated hemostatic efficacy in both rat tail and liver injury models compared to conventional hemostatic products. Furthermore, the adhesive substantially accelerated posthemostasis tissue repair processes, establishing itself as a viable strategy for advanced wound care management.

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Cite This Study

Zhang et al. (2026) studied this question.

synapsesocial.com/papers/6a192ea9fab5b468c4417d0ehttps://doi.org/10.1002/sstr.70465
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