一种新的种植体-基台连接涂层在减少细菌负荷方面的功效:一项体外研究。

ORAL and Implantology Pub Date : 2017-04-10 eCollection Date: 2017-01-01 DOI:10.11138/orl/2017.10.1.001
D Lauritano, C A Bignozzi, D Pazzi, F Cura, F Carinci
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引用次数: 11

摘要

背景:钛是牙种植体的金标准,因为它具有良好的生物相容性和骨整合性能。然而,骨整合的速度受到表面形态的影响,种植体周围的感染可能会影响固定物和长期的骨整合结果。因此,种植体-基牙交界处(IAJ)表面涂层的化学成分有望在预防细菌感染方面发挥关键作用。目的:研究了一种新型聚硅氧烷抗菌涂层,并对其进行了体外实验。材料与方法:20个种植体内腔涂覆PXT, 20个作为对照。结果和结论:10个包被植入物对革兰氏阳性和阴性细菌和真菌的初步测试显示,接触15分钟后,微生物种类完全失活。对其余10个处理过的种植体进行了一系列微生物学测试和PCR分析,在种植体浸泡的种植体外部培养基中掺入转基因单宁菌(Tannerella forsythia, TF)和牙龈卟啉单胞菌(Porphyromonas Gingivalis, PG)后,得出涂层能够灭活通过种植体基台连接处渗透到种植体内部的微生物的结论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Efficacy of a new coating of implant-abutment connections in reducing bacterial loading: an <i>in vitro</i> study.

Efficacy of a new coating of implant-abutment connections in reducing bacterial loading: an in vitro study.

Background: Titanium is the gold standard for dental implants, since it has demonstrated excellent biocompatibility and osseointegration properties. The rate of osseointegration is however affected by the surface morphology and peri-implant infections may affect fixture and the long-term osseointegration outcome. Thus chemical composition of a coating at the implant-abutment junction (IAJ) surface is expected to play a key role in preventing bacterial infection.

Purpose: In the present study a new antimicrobial polysiloxane coating functionalized with chlorexidine digluconate (PXT) has been tested in an in vitro model.

Materials and methods: Twenty implants were coated in the internal chamber with PXT and twenty were used as controls.

Results and conclusions: Ten of the coated implants, preliminarily tested against Gram positive and negative bacteria and fungi, showed a complete inactivation of the microbial species after a 15 min contact. On the remaining ten treated implants a series of microbiological tests and PCR analysis, after contamination of the implant external medium, in which the implant have been immersed, with genetic modified Tannerella forsythia (TF) and Porphyromonas Gingivalis (PG), leads to the conclusion that the coating is capable of inactivating the microbial species penetrating the internal of the implant through the implant abutment junction.

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ORAL and Implantology
ORAL and Implantology Dentistry-Dentistry (all)
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