以止血剂为基础的自流平Janus贴片全面预防术后粘连

IF 8.7 1区 医学 Q1 ENGINEERING, BIOMEDICAL
Rui Fang , Ning Yu , Simeng Chen , Xi Xu , Jianfa Zhang
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引用次数: 0

摘要

术后抗粘连材料面临重大挑战,包括脱位、诱导非特异性组织粘连和继发性纤维蛋白溶解障碍。在这项研究中,我们开发了一种基于止血剂(HD)的自流平、瞬态、单侧粘合Janus贴片(J-HD)。该贴片由三个不同的功能层组成:抗粘附层、增强层和湿组织粘附层。每一层都有特定的用途:底部的抗粘附层由HD和Pluronic F127 (PF127)组成,有效地防止细胞、蛋白质和组织的粘附;中间的聚乙烯醇(PVA)增强层提高了薄膜的力学性能,拉伸强度约为2.02 MPa;顶部HD粘附层对湿组织具有较强的粘附力,界面韧性约为223.85 J/m2。J-HD贴片具有良好的自流平能力和单侧粘附性能,并能有效抵抗纤维蛋白和细胞的体外粘附。在大鼠盲肠-腹壁粘连模型中,与市售的Interceed®薄膜相比,J-HD贴片显著减少了腹部粘连。在机制上,J-HD贴片通过调节组织纤溶酶原激活物(t-PA)和纤溶酶原激活物抑制剂-1 (PAI-1)水平,促进非粘附状态,减少过度炎症反应,促进肠壁完整性修复,有效调节纤溶平衡。J-HD贴片的体内植入没有明显的急性或慢性毒性,引起良好的宿主反应,并具有生物相容性。本研究为临床设计具有抗迁移和抗粘连特性的Janus贴片提供了一种潜在的策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hemoadhican-based self-leveling Janus patch for comprehensive prevention of postoperative adhesions
Postoperative anti-adhesion materials face significant challenges, including dislocation, the induction of nonspecific tissue adhesions, and secondary fibrinolytic disorders. In this study, we developed a self-leveling, transient, unilaterally bonded Janus patch (J-HD) based on hemoadhican (HD). This patch consists of three distinct functional layers: an anti-adhesion layer, a reinforcement layer, and a wet tissue adhesion layer. Each layer serves a specific purpose: the bottom anti-adhesion layer, composed of HD and Pluronic F127 (PF127), effectively prevents cells, proteins, and tissues from adhering; the middle polyvinyl alcohol (PVA) reinforcement layer enhances the mechanical properties of the film, exhibiting a tensile strength of approximately 2.02 MPa; and the top HD adhesion layer provides strong adhesion to wet tissue with an interfacial toughness of approximately 223.85 J/m2. The J-HD patches demonstrate excellent self-leveling ability, unilateral adhesion properties, and effective resistance to fibrin and cell adhesion in vitro. In a rat cecum-abdominal wall adhesion model, the J-HD patch exhibited a significant reduction in abdominal adhesions compared to commercially available Interceed® films. Mechanistically, the J-HD patch effectively regulates the fibrinolytic balance by modulating the levels of tissue plasminogen activator (t-PA) and plasminogen activator inhibitor-1 (PAI-1), promoting a nonadherent state, reducing excessive inflammatory responses, and facilitating the repair of intestinal wall integrity. In vivo implantation of the J-HD patch does not exhibit significant acute or chronic toxicity, elicits a favorable host response, and demonstrates biocompatibility. This study presents a potential strategy for the clinical design of Janus patches with anti-migratory and anti-adhesive properties.
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来源期刊
CiteScore
8.30
自引率
4.90%
发文量
303
审稿时长
30 days
期刊介绍: Materials Today Bio is a multidisciplinary journal that specializes in the intersection between biology and materials science, chemistry, physics, engineering, and medicine. It covers various aspects such as the design and assembly of new structures, their interaction with biological systems, functionalization, bioimaging, therapies, and diagnostics in healthcare. The journal aims to showcase the most significant advancements and discoveries in this field. As part of the Materials Today family, Materials Today Bio provides rigorous peer review, quick decision-making, and high visibility for authors. It is indexed in Scopus, PubMed Central, Emerging Sources, Citation Index (ESCI), and Directory of Open Access Journals (DOAJ).
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