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与CAD/CAM材料相比,聚合技术和添加ZrO纳米颗粒对临时种植体支持的固定悬臂式修复体断裂载荷的影响

Impact of Polymerization Technique and ZrO Nanoparticle Addition on the Fracture Load of Interim Implant-Supported Fixed Cantilevered Prostheses in Comparison to CAD/CAM Material.

作者信息

Alshahrani Faris A, Hamid Shorouq Khalid, Alghamdi Lujain Ali, Alqarawi Firas K, Al-Dulaijan Yousif A, AlRumaih Hamad S, Alalawi Haidar, Al Ghamdi Maram A, Alzoubi Fawaz, Gad Mohammed M

机构信息

Department of Substitutive Dental Sciences, College of Dentistry, Imam Abdulrahman Bin Faisal University, P.O. Box 1982, Dammam 31441, Saudi Arabia.

Ministry of Health, Dammam 31441, Saudi Arabia.

出版信息

Dent J (Basel). 2022 Jun 8;10(6):102. doi: 10.3390/dj10060102.

Abstract

ZrO nanoparticles (ZNPs) have excellent physical properties. This study investigated the fracture load of implant-supported, fixed cantilevered prosthesis materials, reinforced with ZNPs and various polymerization techniques, compared with conventional and CAD/CAM materials. Sixty specimens were made from two CAD/CAM; milled (MIL) (Ceramill TEMP); and 3D-printed (NextDent Denture 3D+). Conventional heat-polymerized acrylic resin was used to fabricate the other specimens, which were grouped according to their polymerization technique: conventionally (HP) and autoclave-polymerized (AP); conventionally cured and reinforced with 5 wt% ZNPs (HPZNP); and autoclave reinforced with 5 wt% ZNPs (APZNP). The specimens were thermocycled (5000 cycles/30 s dwell time). Each specimen was subjected to static vertical loading (1 mm/min) using a universal Instron testing machine until fracture. Scanning electron microscopy was used for fracture surface analyses. The ANOVA showed significant fracture load differences between all the tested groups ( = 0.001). The Tukey post hoc tests indicated a significant difference in fracture load between all tested groups ( ˂ 0.001) except HP vs. HPZNP and AP vs. MIL. APZNP had the lowest mean fracture load value (380.7 ± 52.8 N), while MIL had the highest (926.6 ± 82.8 N). The CAD/CAM materials exhibited the highest fracture load values, indicating that they could be used in long-term interim prostheses. Autoclave polymerization improved fracture load performance, whereas ZrO nanoparticles decreased the fracture load performance of cantilevered prostheses.

摘要

氧化锆纳米颗粒(ZNPs)具有优异的物理性能。本研究调查了与传统材料和CAD/CAM材料相比,用ZNPs增强并采用各种聚合技术的种植体支持的固定悬臂式修复体材料的断裂载荷。从两种CAD/CAM材料制作了60个样本:铣削(MIL)(Ceramill TEMP);和3D打印(NextDent Denture 3D+)。使用传统热聚合丙烯酸树脂制作其他样本,并根据其聚合技术进行分组:传统方式(HP)和高压釜聚合(AP);传统固化并用5 wt% ZNPs增强(HPZNP);以及用5 wt% ZNPs高压釜增强(APZNP)。对样本进行热循环(5000次循环/30秒停留时间)。使用万能英斯特朗测试机对每个样本施加静态垂直载荷(1毫米/分钟)直至断裂。使用扫描电子显微镜进行断口表面分析。方差分析显示所有测试组之间存在显著的断裂载荷差异(=0.001)。Tukey事后检验表明,除了HP与HPZNP以及AP与MIL之外,所有测试组之间的断裂载荷存在显著差异(˂0.001)。APZNP的平均断裂载荷值最低(380.7±52.8 N),而MIL最高(926.6±82.8 N)。CAD/CAM材料表现出最高的断裂载荷值,表明它们可用于长期临时修复体。高压釜聚合改善了断裂载荷性能,而氧化锆纳米颗粒降低了悬臂式修复体的断裂载荷性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/809f/9222143/6d373ab5a24a/dentistry-10-00102-g001.jpg

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