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草酸处理后表面亚微米形貌对兔胫骨牙种植体周围骨量和骨质量的影响

Effects of surface sub-micrometer topography following oxalic acid treatment on bone quantity and quality around dental implants in rabbit tibiae.

作者信息

Kanai Riho, Kuroshima Shinichiro, Kamo Michimasa, Sasaki Muneteru, Uto Yusuke, Inaba Nao, Uchida Yusuke, Hayano Hiroki, Tamaki Saki, Inoue Maaya, Sawase Takashi

机构信息

Department of Applied Prosthodontics, Graduate School of Biomedical Sciences, Nagasaki University, Nagasaki, 852-8588, Japan.

Research Section, Medical Division, KYOCERA Corporation, Yasu, 520-2362, Japan.

出版信息

Int J Implant Dent. 2020 Nov 27;6(1):75. doi: 10.1186/s40729-020-00275-x.

Abstract

BACKGROUND

To explore the effects of topographical modification of titanium substrates at submicron level by oxalic acid treatment on bone quality and quantity around dental implants in rabbit tibiae.

METHODS

A total of 60 blasted CP-grade IV titanium dental implants were used. Twenty-eight control implant surfaces were treated with a mixture of HCl/HSO, whereas 28 other test implant surfaces were treated with oxalic acid following HCl/HSO treatment. Two randomly selected sets of control or test implants were placed in randomly selected proximal tibiae of 14 female Japanese white rabbits. Euthanasia was performed 4 and 8 weeks post-implant placement. Bone to implant contact (BIC), bone area fraction (BAF), ratios of mature and immature bone to total bone, and the amount and types of collagen fibers were evaluated quantitatively. Two control and two test implants were used to analyze surface characteristics.

RESULTS

Treatment by oxalic acid significantly decreased Sa and increased Ra of test implant surfaces. BIC in test implants was increased without alteration of BAF and collagen contents at 4 and 8 weeks after implant placement when compared with control implants. The ratios of immature and mature bone to total bone differed significantly between groups at 4 weeks post-implantation. Treatment by oxalic acid increased type I collagen and decreased type III collagen in bone matrices around test implants when compared with control implants at 8 weeks after implant placement. The effects of topographical changes of implant surfaces induced by oxalic acid on BAF, mature bone, collagen contents, and type I collagen were significantly promoted with decreased immature bone formation and type III collagen in the later 4 weeks post-implantation.

CONCLUSIONS

Treatment of implant surfaces with oxalic acid rapidly increases osseointegration from the early stages after implantation. Moreover, submicron topographical changes of dental implants induced by oxalic acid improve bone quality based on bone maturation and increased production of type I collagen surrounding dental implants in the late stage after implant placement.

摘要

背景

探讨草酸处理对微米级钛基底表面形貌的改变,对兔胫骨牙种植体周围骨质量和骨量的影响。

方法

共使用60枚喷砂处理的CP-IV级钛牙种植体。28枚对照种植体表面用HCl/H₂SO₄混合液处理,另外28枚试验种植体表面在HCl/H₂SO₄处理后用草酸处理。将两组随机选择的对照或试验种植体植入14只雌性日本白兔随机选择的胫骨近端中。在种植体植入后4周和8周实施安乐死。定量评估骨与种植体接触率(BIC)、骨面积分数(BAF)、成熟骨和未成熟骨与总骨的比例,以及胶原纤维的数量和类型。使用2枚对照种植体和2枚试验种植体分析表面特征。

结果

草酸处理显著降低了试验种植体表面的Sa并增加了Ra。与对照种植体相比,试验种植体植入后4周和8周时,BIC增加,而BAF及胶原含量未改变。种植体植入后4周时,两组之间未成熟骨和成熟骨与总骨的比例差异显著大植入后8周时,与对照种植体相比试验种植体周围骨基质中I型胶原增加,III型胶原减少。植入后4周后期,草酸诱导的种植体表面形貌变化对BAF、成熟骨、胶原含量和I型胶原的影响显著增强,同时未成熟骨形成和III型胶原减少。

结论

用草酸处理种植体表面可在植入后的早期迅速提高骨结合率。此外,草酸诱导的牙种植体亚微米级表面形貌变化基于骨成熟和植入后后期种植体周围I型胶原产量增加,从而改善骨质量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a914/7691415/5c0f34d278a7/40729_2020_275_Fig1_HTML.jpg

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