Bond strength of zirconia- or polymer-based copings cemented on implant-supported titanium bases - an in vitro study.

Biomaterial investigations in dentistry Pub Date : 2021-09-13 eCollection Date: 2021-01-01 DOI:10.1080/26415275.2021.1974301
Eliann Oddbratt, Lisa Hua, Bruno R Chrcanovic, Evaggelia Papia
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引用次数: 1

Abstract

Purpose: To evaluate the bond strength between polymer-based copings and zirconia copings as positive control, cemented on implant-supported titanium bases with different adhesive cement systems. Moreover, to evaluate if airborne-particle abrasion of polymethylmetacrylate (PMMA) would enhance the bond strength.

Methods: Four groups of different materials were used to fabricate the copings, 30 in each group: airborne-particle abraded milled zirconia (TAZirconia, control group), milled PMMA (TPMMA), airborne-particle abraded milled PMMA (TAPMMA) and 3 D-printed micro filled hybrid resin (TAMFH). Each group of copings was cemented on titanium bases by three different adhesive cement systems, 10 each: Multilink Hybrid Abutment, Panavia V5, RelyX Ultimate. The specimens were stored dry at room temperature for 24 h, subjected to thermocycling for 5000 cycles followed by evaluating the bond strength by tensile strength test.

Results: TPMMA and TAPMMA cemented with Multilink Hybrid Abutment showed statistically significant lower bond strength in comparison to TAZirconia and TAMFH. No difference was observed between the latter two. TPMMA, TAPMMA and TAMFH had a statistically significant lower bond strength compared to the control group when cemented with Panavia V5. TPMMA and TAPMMA cemented with Rely X Ultimate showed statistically significant lower bond strength in comparison to the control group.

Conclusion: Almost all experimental groups, except 3 D-printed MFH, performed inferior than the positive control group where the highest bond strength was reported for the cementation of zirconia copings cemented with Panavia V5 or Rely X Ultimate. Airborne-particle abrasion did not improve the bond strength of the PMMA, except when Multilink Hybrid Abutment was used.

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氧化锆或聚合物基涂层在种植体支持的钛基上胶结的粘结强度-一项体外研究。
目的:评价聚合物基粘结剂和氧化锆粘结剂作为阳性对照,在种植体支撑的钛基上使用不同的粘结剂体系进行胶结。此外,还评估了聚甲基丙烯酸甲酯(PMMA)的空气颗粒磨损是否会提高粘结强度。方法:采用四组不同材料制作覆膜,每组30个:空气颗粒磨粒氧化锆(TAZirconia,对照组)、磨粒PMMA (TPMMA)、空气颗粒磨粒PMMA (TAPMMA)和3d打印微填充混合树脂(TAMFH)。通过三种不同的胶结系统(每种10种:Multilink Hybrid基台、Panavia V5、RelyX Ultimate),将每组覆盖层粘合在钛基上。室温下干燥保存24 h,热循环5000次,然后通过拉伸强度测试评估粘结强度。结果:与TAZirconia和TAMFH相比,TPMMA和TAPMMA多链接复合基台粘接的粘接强度有统计学意义。后两者之间没有观察到差异。Panavia V5胶结后,TPMMA、TAPMMA和TAMFH的粘结强度较对照组有统计学意义的降低。与对照组相比,使用Rely X Ultimate胶结的TPMMA和TAPMMA的粘结强度有统计学意义上的降低。结论:除了3d打印的MFH外,几乎所有实验组的效果都不如阳性对照组,阳性对照组用Panavia V5或Rely X Ultimate胶结氧化锆覆层的粘结强度最高。除了使用多连杆混合基台外,空气颗粒磨损对PMMA的粘结强度没有提高。
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