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Resistance of Synthetic and Biologic Surgical Meshes to Methicillin-Resistant Staphylococcus aureus Biofilm: An In Vitro Investigation

机译:合成和生物外​​科网格对耐甲氧西林金黄色葡萄球菌生物膜的抵抗力:体外研究。

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摘要

Surgical meshes have become the standard procedure for a variety of surgical applications with 20 million meshes being implanted each year. The popularity of mesh usage among surgeons is backed by the multiple studies that support its functionality as a tool for improving surgical outcomes. However, their use has also been associated with infectious surgical complications and many surgeons have turned to biologic meshes. While there have been several studies investigating synthetic meshes, there is limited data comparing synthetic and biologic meshes in vitro in an infection model. This study evaluates the in vitro susceptibility of both synthetic and biologic meshes to single-species methicillin-resistant Staphylococcus aureus (MRSA) biofilms. This research compares biofilm biomass, average thickness, and coverage between the three meshes through florescent in situ hybridization (FISH), confocal scanning microscopy (CSLM), and image analysis. We also report the varying levels of planktonic and attached bacteria through sonication and cfu counts. While the data illustrates increased biofilm formation on biologic mesh in vitro, the study must further be investigated in vivo to confirm the study observations.
机译:外科网片已经成为各种外科应用的标准程序,每年植入2000万个网片。网格研究在外科医生中的流行得到了多项研究的支持,这些研究支持其作为改善手术结果的工具的功能。然而,它们的使用也与感染性手术并发症相关联,并且许多外科医生已经转向生物网。尽管有几项研究合成网孔的研究,但在感染模型中体外比较合成网孔和生物网孔的数据有限。这项研究评估合成和生物网对单种耐甲氧西林金黄色葡萄球菌(MRSA)生物膜的体外敏感性。这项研究通过荧光原位杂交(FISH),共聚焦扫描显微镜(CSLM)和图像分析比较了三个网孔之间的生物膜生物量,平均厚度和覆盖率。我们还通过超声和​​cfu计数报告了浮游细菌和附着细菌的水平变化。尽管数据表明体外生物网上的生物膜形成增加,但必须进一步在体内进行研究以证实研究结果。

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