首页> 外文期刊>Journal of Applied Oral Science >Evaluation of an IBAD thin-film process as an alternative method for surface incorporation of bioceramics on dental implants: a study in dogs
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Evaluation of an IBAD thin-film process as an alternative method for surface incorporation of bioceramics on dental implants: a study in dogs

机译:评估IBAD薄膜工艺作为将生物陶瓷表面结合到牙种植体上的替代方法:对狗的一项研究

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Thin-film bioceramic coatings are potential alternatives to overcome the limitations provided by other commercially available coating techniques like PSHA, where variable bioceramic dissolution added to a metalloceramic weak link are process- inherent. The purpose of this investigation was to determine the overall and site specific (to 0.5 mm from implant surface) levels of osseoactivity around a thin-film (IBAD processed) coated titanium alloy implant versus a non surface modified (sand-blasted/acid etched) titanium alloy implant in a canine model. The surgical model comprised the proximal tibiae epiphyses with four implants placed in each limb remaining for 2 and 4 weeks in-vivo. 10 mg/Kg oxytetracycline was administered 48 hours prior to euthanization. The limbs were retrieved by sharp dissection, reduced to blocks, and subsequently nondecalcified processed for fluorescent microscopy. Micrographs (20x mag) were acquired around the implant perimeter and merged for overall biological response evaluations, and four micrographs (40x mag. subdivided in rectangles) were acquired along one of the implant sides for tetracycline labeled area fraction quantification. The results showed biocompatible and osseoconductive properties for the thin-film coated and uncoated titanium alloy implants. Tetracycline labeled area fraction analyses showed that the thin-film coated implants presented significantly higher overall and site specific osseoactivity levels at 2 and 4 weeks. The site specific osseoactivity values were significantly higher compared to overall values for control and thin-film coated implants at both times in-vivo. According to the results obtained in this study, thin-film coated implants enhanced biological response at the early implantation times evaluated.
机译:薄膜生物陶瓷涂层是克服其他商用涂层技术(例如PSHA)所提供的局限性的潜在替代方法,在PSHA中,添加到金属陶瓷薄弱环节的可变生物陶瓷溶解是过程固有的。这项研究的目的是确定与未经表面改性(喷砂/酸蚀)相比,薄膜(IBAD处理)涂覆的钛合金植入物周围的总体和特定部位(距植入物表面0.5 mm)的骨活性水平犬模型中的钛合金植入物。手术模型包括胫骨近端骨phy,每个肢体中放置四个植入物,在体内分别保留2和4周。安乐死前48小时给予10 mg / Kg土霉素。通过锋利的解剖取回四肢,将其缩小成块,然后进行非脱钙处理,用于荧光显微镜检查。在植入物周围获取显微照片(20x mag)并合并以进行总体生物学反应评估,并在植入物一侧之一获取四张显微照片(40x mag。细分为矩形)以进行四环素标记的面积分数定量。结果表明,薄膜涂覆和未涂覆的钛合金植入物具有生物相容性和骨传导性能。四环素标记的面积分数分析表明,薄膜涂层的植入物在第2周和第4周呈现出更高的总体和部位比骨活性水平。与体内和体外的对照和薄膜包被的植入物的总值相比,特定部位的骨活性值显着更高。根据这项研究获得的结果,薄膜涂层的植入物在评估的早期植入时间内增强了生物反应。

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