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The utilization of chitosan/Bletilla striata hydrogels to elevate anti-adhesion,anti-inflammatory and pro-angiogenesis properties of polypropylene mesh in abdominal wall repair

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摘要 Polypropylene(PP)mesh is commonly used in abdominal wall repair due to its ability to reduce the risk of organ damage,infections and other complications.However,the PP mesh often leads to adhesion formation and does not promote functional tissue repair.In this study,we synthesized one kind of aldehyde Bletilla striata polysaccharide(BSPA)modified chitosan(CS)hydrogel based on Schiff base reaction.The hydrogel exhibited a porous network structure,a highly hydrophilic surface and good biocompatibility.We wrapped the PP mesh inside the hydrogel and evaluated the performance of the resulting composites in a bilateral 1×1.5cm abdominal wall defect model in rats.The results of gross observation,histological staining and immunohistochemical staining demonstrated the positive impact of the CS hydrogel on anti-adhesion and wound healing effects.Notably,the addition of BSPA to the CS hydrogel further improved the performance of the composites in vivo,promoting wound healing by enhancing collagen deposition and capillary rearrangement.This study suggested that the BSPA-modified CS hydrogel significantly promoted the anti-adhesion,anti-inflammatory and pro-angiogenesis properties of PP meshes during the healing process.Overall,this work offers a novel approach to the design of abdominal wall repair patches.
出处 《Regenerative Biomaterials》 SCIE EI CSCD 2024年第4期111-124,共14页 再生生物材料(英文版)
基金 the National Natural Science Foundation of China(No.32171345) the Hebei Provincial Natural Science Foundation of China(No.C2022104003) the Beijing Nova Programme Interdisciplinary Cooperation Project(No.20230484464) the Fok Ying Tung Education Foundation(No.141039) the Fund of Key Laboratory of Advanced Materials of Ministry of Education(No.AdvMat-2023-10) the International Joint Research Center of Aerospace Biotechnology and Medical Engineering,Ministry of Science and Technology of China the 111 Project(No.B13003).
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