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钛和氧化锆牙科植入物在疲劳和骨整合行为方面的相关情况。

Relevant Aspects of Titanium and Zirconia Dental Implants for Their Fatigue and Osseointegration Behaviors.

作者信息

Aragoneses Javier, Valverde Nansi Lopez, Fernandez-Dominguez Manuel, Mena-Alvarez Jesús, Rodriguez Cinthia, Gil Javier, Aragoneses Juan Manuel

机构信息

Department of Medicine and Medical Specialties, Faculty of Medicine and Health Sciences, Universidad Alcalá de Henares, 28871 Madrid, Spain.

Department of Translational Medicine, CEU San Pablo University, 28660 Madrid, Spain.

出版信息

Materials (Basel). 2022 Jun 6;15(11):4036. doi: 10.3390/ma15114036.

Abstract

Osseointegration capacity and good mechanical behavior are key to the success of the dental implant. In many investigations, comparisons of properties are made using different dental implant designs and therefore the results can be influenced by the macrodesign of the dental implant. In this work, studies were carried out with the same dental implant model using different roughness and different materials-commercially pure titanium (grade 4) and zirconia. For this purpose, 80 smooth passivated titanium (Ti), 80 smooth zirconia (ZrO), and 80 rough passivated titanium (Ti-R) dental implants were used. The samples were characterized by their roughness, wettability, surface energy, residual stresses, and fatigue behavior. The implants were implanted in minipigs for 4 and 12 weeks. The animals were sacrificed, and histological studies were carried out to determine the osseointegration parameters for each of the implantation times. Ti and ZrO dental implants have very similar wettability and surface energy properties. However, the roughness causes a decrease in the hydrophilic character and a decrease of the total surface energy and especially the dispersive component, while the polar component is higher. Due to the compressive residual stresses of alumina sandblasting, the rough dental implant has the best fatigue behavior, followed by Ti and due to the lack of toughness and rapid crack propagation the ZrO implants have the worst fatigue behavior. The bone index contact (BIC) values for 4 weeks were around 25% for Ti, 32% for ZrO, and 45% for Ti-R. After 12 weeks the Ti dental implants increased to 42%, for Ti, 43% for ZrO, and an important increase to 76% was observed for Ti-R implants. In vivo results showed that the key factor that improves osseointegration is roughness. There was no significant difference between ZrO and Ti implants without sandblasting.

摘要

骨结合能力和良好的力学性能是牙种植成功的关键。在许多研究中,使用不同的牙种植体设计对性能进行比较,因此结果可能会受到牙种植体宏观设计的影响。在这项工作中,使用相同的牙种植体模型,采用不同的粗糙度和不同的材料——商业纯钛(4级)和氧化锆,进行了研究。为此,使用了80颗光滑钝化钛(Ti)、80颗光滑氧化锆(ZrO)和80颗粗糙钝化钛(Ti-R)牙种植体。通过粗糙度、润湿性、表面能、残余应力和疲劳行为对样品进行表征。将种植体植入小型猪体内4周和12周。处死动物,并进行组织学研究以确定每个植入时间的骨结合参数。Ti和ZrO牙种植体具有非常相似的润湿性和表面能特性。然而,粗糙度会导致亲水性降低、总表面能降低,尤其是分散成分降低,而极性成分较高。由于氧化铝喷砂产生的压缩残余应力,粗糙牙种植体具有最佳的疲劳性能,其次是Ti,而ZrO种植体由于缺乏韧性和裂纹快速扩展,具有最差的疲劳性能。4周时,Ti的骨指数接触(BIC)值约为25%,ZrO为32%,Ti-R为45%。12周后,Ti牙种植体增加到42%,ZrO为43%,Ti-R种植体则显著增加到76%。体内结果表明改善骨结合的关键因素是粗糙度。未喷砂的ZrO和Ti种植体之间没有显著差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a2ac/9182570/a641c3381b2a/materials-15-04036-g001.jpg

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