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首页> 外文期刊>International Journal of Nanomedicine >In vivo evaluation of the anti-infection potential of gentamicin-loaded nanotubes on titania implants
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In vivo evaluation of the anti-infection potential of gentamicin-loaded nanotubes on titania implants

机译:庆大霉素纳米管对二氧化钛植入物抗感染潜力的体内评估

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Titanium-based implants have been widely used in orthopedic surgery; however, failures still occur. Our in vitro study has demonstrated that gentamicin-loaded, 80?nm-diameter nanotubes possessed both antibacterial and osteogenic activities. Thus, the aim of this study was to further investigate the in vivo anti-infection effect of the titanium implants with gentamicin-loaded nanotubes. Thirty-six male Sprague Dawley rats were used to establish an implant-associated infection model. A volume of 50?μL Staphylococcus aureus suspension (1×105?CFU/mL) was injected into the medullary cavity of the left femur, and then the titanium rods without modification (Ti), titanium nanotubes without drug loading (NT), and gentamicin-loaded titanium nanotubes (NT-G) were inserted with phosphate-buffered saline-inoculated Ti rods as a blank control. X-ray images were obtained 1?day, 21?days, and 42?days after surgery; micro-computed tomography, microbiological, and histopathological analyses were used to evaluate the infections at the time of sacrifice. Radiographic signs of bone infection, including osteolysis, periosteal reaction, osteosclerosis, and damaged articular surfaces, were demonstrated in the infected Ti group and were slightly alleviated in the NT group but not observed in the NT-G group. Meanwhile, the radiographic and gross bone pathological scores of the NT-G group were significantly lower than those of the infected Ti group ( P <0.01). Explant cultures revealed significantly less bacterial growth in the NT-G group than in the Ti and NT groups ( P <0.01), and the NT group showed decreased live bacterial growth compared with the Ti group ( P <0.01). Confocal laser scanning microscopy, scanning electron microscopy, and histopathological observations further confirmed decreased bacterial burden in the NT-G group compared with the Ti and NT groups. We concluded that the NT-G coatings can significantly prevent the development of implant-associated infections in a rat model; therefore, they may provide an effective drug-loading strategy to combat implant-associated infections in clinic.
机译:钛基植入物已广泛用于骨科手术;但是,故障仍然会发生。我们的体外研究表明,载有庆大霉素的直径为80?nm的纳米管具有抗菌和成骨活性。因此,本研究的目的是进一步研究载有庆大霉素的纳米管的钛植入物的体内抗感染作用。使用36只雄性Sprague Dawley大鼠建立与植入物相关的感染模型。将50μL金黄色葡萄球菌悬液(1×10 5 ?CFU / mL)注入左股骨的髓腔中,然后注入未经修饰的钛棒(Ti),钛纳米管在没有药物加载(NT)的情况下,将装有庆大霉素的钛纳米管(NT-G)与磷酸盐缓冲液接种的Ti棒插入,作为空白对照。手术后1、2、21和42天获得X射线图像。显微计算机断层扫描,微生物学和组织病理学分析用于评估处死时的感染情况。在感染的Ti组中显示出骨感染的影像学迹象,包括溶骨,骨膜反应,骨硬化和关节表面受损,在NT组中稍有缓解,但在NT-G组中未观察到。同时,NT-G组的影像学和骨病理学评分明显低于感染的Ti组(P <0.01)。外植体培养物显示,NT-G组的细菌生长明显少于Ti和NT组(P <0.01),NT组的活菌生长较Ti组下降(P <0.01)。共聚焦激光扫描显微镜,扫描电子显微镜和组织病理学观察进一步证实,与Ti和NT组相比,NT-G组细菌含量降低。我们的结论是,NT-G涂层可以显着预防大鼠模型中植入物相关感染的发展。因此,它们可为临床提供有效的载药策略,以对抗植入物相关感染。

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