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In Vitro Evaluation of Leakage at Implant-Abutment Connection of Three Implant Systems Having the Same Prosthetic Interface Using Rhodamine B

机译:使用罗丹明B对三个具有相同义肢界面的种植体系统的种植体-基台连接处的泄漏进行体外评估

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Objectives. Hollow space between implant and abutment may act as reservoir for commensal and/or pathogenic bacteria representing a potential source of tissue inflammation. Microbial colonization of the interfacial gap may ultimately lead to infection and bone resorption. Using Rhodamine B, a sensitive fluorescent tracer dye, we aim in this study to investigate leakage at implant-abutment connection of three implant systems having the same prosthetic interface.Materials and Methods. Twenty-one implants (seven Astra Tech, seven Euroteknika, and seven Dentium) with the same prosthetic interface were connected to their original abutments, according to the manufacturers’ recommendation. After determination of the inner volume of each implant systems, the kinetic quantification of leakage was evaluated for each group using Rhodamine B (10−2 M). For each group, spectrophotometric analysis was performed to detect leakage with a fluorescence spectrophotometer at 1 h (T0) and 48 h (T1) of incubation time at room temperature.Results. Astra Tech had the highest inner volume (6.8 μL), compared to Dentium (4 μL) and Euroteknika (2.9 μL). At T0 and T1, respectively, the leakage volume and percentage of each system were as follows: Astra Tech 0.043 μL or 1.48% (SD 0.0022), 0.08 μL or 5.56% (SD 0.0074), Euroteknika 0.09 μL or 6.93% (SD 0.0913), 0.21 μL or 20.55% (SD 0.0035), and Dentium 0.07 μL or 4.6% (SD 0.0029), 0.12 μL or 10.47% (SD 0.0072).Conclusion. The tested internal conical implant-abutment connections appear to be unable to prevent leakage. In average, Astra Tech implants showed the highest inner volume and the least leakage.
机译:目标。植入物和基台之间的中空空间可充当代表组织炎症潜在来源的共生和/或病原细菌的储存库。界面间隙的微生物定植可能最终导致感染和骨吸收。使用罗丹明B(一种灵敏的荧光示踪染料),本研究旨在研究三个具有相同假体界面的植入物系统在种植体-基台连接处的泄漏。材料和方法。根据制造商的建议,将具有相同假体界面的21个植入物(七个Astra Tech,七个Euroteknika和七个Dentium)连接到其原始基台。确定每个植入系统的内部容积后,使用罗丹明B(10-2−M)对每组的渗漏进行动力学定量评估。对于每组,在室温下孵育时间为1 h(T0)和48 h(T1)时,用荧光分光光度计进行分光光度分析以检测泄漏。与Dentium(4µL)和Euroteknika(2.9µL)相比,Astra Tech的内部容积最大(6.8µL)。分别在T0和T1时,每个系统的泄漏量和百分比如下:Astra Tech 0.043μL或1.48%(SD 0.0022),0.08μL或5.56%(SD 0.0074),Euroteknika 0.09μL或6.93%(SD 0.0913) ),0.21μL或20.55%(SD 0.0035)和Dentium0.07μL或4.6%(SD 0.0029),0.12μL或10.47%(SD 0.0072)。经过测试的内部圆锥形种植体-基台连接似乎无法防止泄漏。平均而言,Astra Tech植入物的内部容积最大,泄漏最少。

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