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用于疝修补网片材料原位涂层的热响应性抗菌水凝胶

Thermo-Responsive Antimicrobial Hydrogel for the In-Situ Coating of Mesh Materials for Hernia Repair.

作者信息

Pérez-Köhler Bárbara, Pascual Gemma, Benito-Martínez Selma, Bellón Juan Manuel, Eglin David, Guillaume Olivier

机构信息

Department of Medicine and Medical Specialties, University of Alcalá, 28805 Madrid, Spain.

Biomedical Networking Research Centre on Bioengineering, Biomaterials and Nanomedicine (CIBER-BBN), 28029 Madrid, Spain.

出版信息

Polymers (Basel). 2020 May 29;12(6):1245. doi: 10.3390/polym12061245.

Abstract

The prophylactic coating of prosthetic mesh materials for hernia repair with antimicrobial compounds is commonly performed before implantation of the mesh in the abdominal wall. We propose a novel alternative, which is a rifampicin-loaded thermo-responsive hydrogel formulation, to be applied on the mesh after its implantation. This formulation becomes a gel in-situ once reached body temperature, allowing an optimal coating of the mesh along with the surrounding tissues. In vitro, the hydrogel cytotoxicity was assessed using rabbit fibroblasts and antimicrobial efficacy was determined against . An in vivo rabbit model of hernia repair was performed; implanted polypropylene meshes (5 × 2 cm) were challenged with (10 CFU), for two study groups-unloaded (n = 4) and 0.1 mg/cm rifampicin-loaded hydrogel (n = 8). In vitro, antibacterial activity of the hydrogel lasted for 5 days, without sign of cytotoxicity. Fourteen days after implantation, meshes coated with drug-free hydrogel developed a strong infection and resulted in poor tissue integration. Coating meshes with the rifampicin-loaded hydrogel fully prevented implant infection and permitted an optimal tissue integration. Due to its great performance, this, degradable, thermo-responsive antimicrobial hydrogel could potentially be a strong prophylactic armamentarium to be combined with prosthesis in the surgical field.

摘要

用抗菌化合物对用于疝修补的人工合成补片材料进行预防性涂层,通常是在补片植入腹壁之前进行。我们提出了一种新的替代方法,即在补片植入后将一种载有利福平的热响应水凝胶制剂应用于补片上。该制剂一旦达到体温就会原位形成凝胶,从而能够对补片及其周围组织进行最佳的涂层覆盖。在体外,使用兔成纤维细胞评估了水凝胶的细胞毒性,并测定了其对……的抗菌效果。进行了兔疝修补的体内模型实验;植入聚丙烯补片(5×2厘米),用……(10 CFU)对两个研究组进行攻击,即未加载组(n = 4)和载有0.1毫克/平方厘米利福平的水凝胶组(n = 8)。在体外,水凝胶的抗菌活性持续了5天,没有细胞毒性迹象。植入14天后,涂有无药物水凝胶的补片发生了严重感染,组织整合不佳。用载有利福平的水凝胶涂覆补片完全预防了植入物感染,并实现了最佳的组织整合。由于其出色的性能,这种可降解的、热响应性抗菌水凝胶有可能成为外科领域中与假体联合使用的强大预防性手段。

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