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Cleaning effect of osteoconductive powder abrasive treatment on explanted human implants and biofilm‐coated titanium discs

机译:骨传导性粉末磨料处理对已植入的人体植入物和生物膜涂覆的钛片的清洁效果

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摘要

The aim of this study is to test the cleaning effect and surface modification of a new implant surface treatment on explanted dental implants and titanium discs. It is a modified air powder abrasive (APA) treatment applied using osteoconductive powders. Twenty‐eight in vitro Ca‐precipitated organic film‐coated titanium discs and 13 explanted dental implants were treated. In a 2‐step approach, 3 powders were used: hydroxylapatite (HA) and biomimetic calcium phosphate (BioCaP), which are osteoconductive, and erythritol, which is not. APA treatment was applied. (Air pressure: 2.4 bar; water flow for cleaning: 41.5 ml/min, for Coating 1: 2.1 ml/min, and for Coating 2: 15.2 ml/min.) The test groups were as follows: Group 1: HA cleaning + BioCaP Coating 1; Group 2: HA cleaning + BioCaP Coating 2; Group 3: erythritol cleaning + BioCaP Coating 1; Group 4: erythritol cleaning + BioCaP Coating 2; Group 5: HA cleaning; Group 6: erythritol cleaning; and control: no powder. Cleaned areas were calculated by point counting method. Surface changes and chemical content were evaluated using light microscopy, scanning electron microscopy, and energy‐dispersive X‐ray spectroscopy. Cleaning effect between groups was compared by a pairwise Student's t test. The significance level was fixed at p < .05. Cleaning effect on the discs was 100% in all test groups and 5% in the control. Powder particles in varying size and shape were embedded on the surface. All HA‐ or CaP‐treated surfaces showed Ca and P content but no surface damage. Calcified biofilm remnants were removed from the implant surface by the test groups, whereas in control groups, they remained. APA treatment with CaP and HA powders under clinically applicable pressure settings gives positive results in vitro; therefore, they could be promising when used in vivo.
机译:这项研究的目的是测试一种新的种植体表面处理对种植牙种植体和钛盘的清洁效果和表面改性。它是使用骨传导性粉末进行的改性空气粉末研磨剂(APA)处理。治疗了28个体外钙沉淀的有机膜涂层钛合金椎间盘和13个外植牙种植体。在两步法中,使用了3种粉末:羟基磷灰石(HA)和仿生磷酸钙(BioCaP)具有骨传导性,而赤藓醇则没有。应用APA治疗。 (气压:2.4 bar;清洁水流量:41.5 ml / min,涂料1:2.1 ml / min,涂料2:15.2 ml / min。)测试组如下:第1组:HA清洁+ BioCaP涂层1;第2组:HA清洁+ BioCaP涂层2;第3组:赤藓糖醇清洁+ BioCaP涂层1;第4组:赤藓糖醇清洁+ BioCaP涂层2;第5组:HA清洁;第6组:赤藓糖醇清洁;和控制:没有粉末。通过点计数法计算清洁面积。使用光学显微镜,扫描电子显微镜和能量色散X射线光谱法评估了表面变化和化学含量。组之间的清洁效果通过成对的学生t检验进行比较。显着性水平固定为p <.05。在所有测试组中,对光盘的清洁效果均为100%,在对照组中为5%。将大小和形状不同的粉末颗粒嵌入表面。所有经过HA或CaP处理的表面均显示Ca和P含量,但无表面损伤。测试组从植入物表面去除了钙化的生物膜残留物,而对照组则保留了它们。在临床可应用的压力设置下,用CaP和HA粉末进行APA处理可在体外产生积极的结果;因此,它们在体内使用时可能很有希望。

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