IMEM-BRT Group, Departament d'Enginyeria Química, EEBE, Universitat Politècnica de Catalunya, C/Eduard Maristany, 10-14, 08019 Barcelona, Spain.
Barcelona Research Center in Multiscale Science and Engineering, Universitat Politècnica de Catalunya, 08930 Barcelona, Spain.
ACS Biomater Sci Eng. 2023 Jun 12;9(6):3699-3711. doi: 10.1021/acsbiomaterials.3c00311. Epub 2023 May 26.
Smart polypropylene (PP) hernia meshes were proposed to detect surgical infections and to regulate cell attachment-modulated properties. For this purpose, lightweight and midweight meshes were modified by applying a plasma treatment for subsequent grafting of a thermosensitive hydrogel, poly(-isopropylacrylamide) (PNIPAAm). However, both the physical treatment with plasma and the chemical processes required for the covalent incorporation of PNIPAAm can modify the mechanical properties of the mesh and thus have an influence in hernia repair procedures. In this work, the mechanical performance of plasma-treated and hydrogel-grafted meshes preheated at 37 °C has been compared with standard meshes using bursting and the suture pull out tests. Furthermore, the influence of the mesh architecture, the amount of grafted hydrogel, and the sterilization process on such properties have been examined. Results reveal that although the plasma treatment reduces the bursting and suture pull out forces, the thermosensitive hydrogel improves the mechanical resistance of the meshes. Moreover, the mechanical performance of the meshes coated with the PNIPAAm hydrogel is not influenced by ethylene oxide gas sterilization. Micrographs of the broken meshes evidence the role of the hydrogel as reinforcing coating for the PP filaments. Overall, results confirm that the modification of PP medical textiles with a biocompatible thermosensitive hydrogel do not affect, and even improve, the mechanical requirements necessary for the implantation of these prostheses in vivo.
智能聚丙烯(PP)疝修补网片被提议用于检测手术感染,并调节细胞附着调节特性。为此,通过施加等离子体处理来改性轻质和中质网,以随后接枝热敏水凝胶聚(异丙基丙烯酰胺)(PNIPAAm)。然而,等离子体处理的物理处理以及用于共价接枝 PNIPAAm 的化学过程都可以改变网片的机械性能,从而对疝修补程序产生影响。在这项工作中,使用爆破和缝线拔出试验比较了在 37°C 下预热的等离子体处理和水凝胶接枝网片与标准网片的机械性能。此外,还研究了网片结构、接枝水凝胶的量和灭菌过程对这些性能的影响。结果表明,尽管等离子体处理降低了爆破和缝线拔出力,但热敏水凝胶提高了网片的机械阻力。此外,用环氧乙烷气体灭菌处理不会影响涂覆有 PNIPAAm 水凝胶的网片的机械性能。破裂网片的显微照片证明了水凝胶作为 PP 纤维增强涂层的作用。总体而言,结果证实,用生物相容性热敏水凝胶改性 PP 医用纺织品不会影响,甚至改善,这些假体在体内植入所需的机械要求。