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Leakage of Microbial Endotoxin through the Implant-Abutment Interface in Oral Implants: An In Vitro Study

机译:通过口腔种植体中的种植体-基台界面泄漏微生物内毒素的体外研究

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摘要

Background. Endotoxin initiates osteoclastic activity resulting in bone loss. Endotoxin leakage through implant abutment connections negatively influences peri-implant bone levels. Objectives. (i) To determine if endotoxin can traverse different implant-abutment connection (IAC) designs; (ii) to quantify the amount of endotoxins traversing the IAC; (iii) to compare the in vitro comportments of different IACs. Materials and Methods. Twenty-seven IACs were inoculated with E. coli endotoxin. Six of the twenty-seven IACs were external connections from one system (Southern Implants) and the remaining twenty-one IACs were made up of seven internal IAC types from four different implant companies (Straumann, Ankylos, and Neodent, Southern Implants). Results. Of the 27 IACs tested, all 6 external IACs leaked measurable amounts of endotoxin. Of the remaining 21 internal IACs, 9 IACs did not show measurable leakage whilst the remaining 12 IACs leaked varying amounts. The mean log endotoxin level was significantly higher for the external compared to internal types (p = 0.015). Conclusion. Within the parameters of this study, we can conclude that endotoxin leakage is dependent on the design of the IAC. Straumann Synocta, Straumann Cross-fit, and Ankylos displayed the best performances of all IACs tested with undetectable leakage after 7 days. Each of these IACs incorporated a morse-like component in their design. Speculation still exists over the impact of IAC endotoxin leakage on peri-implant tissues in vivo; hence, further investigations are required to further explore this.
机译:背景。内毒素启动破骨细胞活动,导致骨质流失。通过植入物基台连接的内毒素泄漏会对植入物周围的骨水平产生负面影响。目标。 (i)确定内毒素是否可以穿越不同的植入物-基台连接(IAC)设计; (ii)量化穿越IAC的内毒素的数量; (iii)比较不同IAC的体外情况。材料和方法。用大肠杆菌内毒素接种了27个IAC。二十七个IAC中有六个是来自一个系统(南部植入物)的外部连接,其余二十一个IAC由来自四个不同植入公司(Straumann,Ankylos和Neodent,南部植入物)的七种内部IAC组成。结果。在测试的27个IAC中,所有6个外部IAC都泄漏了可测量的内毒素。在其余21个内部IAC中,有9个IAC没有显示可测量的泄漏,而其余12个IAC则泄漏了不同数量的泄漏。与内部类型相比,外部类型的平均对数内毒素水平显着更高(p = 0.015)。结论。在这项研究的参数范围内,我们可以得出结论,内毒素泄漏取决于IAC的设计。 Straumann Synocta,Straumann Cross-fit和Ankylos在7天后均表现出所有IAC最佳性能,并且泄漏率未检测到。这些IAC中的每一个都在其设计中包含了一个类似莫尔斯的组件。关于IAC内毒素泄漏对体内植入物周围组织的影响仍然存在猜测。因此,需要进一步研究以进一步探索这一点。

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