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预蚀刻对一步自蚀刻粘结系统所形成粘结稳定性的影响。

Influence of preliminary etching on the stability of bonds created by one-step self-etch bonding systems.

作者信息

Taschner Michael, Nato Fernando, Mazzoni Annalisa, Frankenberger Roland, Falconi Mirella, Petschelt Anselm, Breschi Lorenzo

机构信息

Dental Clinic 1 -- Operative Dentistry and Periodontology, University of Erlangen, Erlangen, Germany.

出版信息

Eur J Oral Sci. 2012 Jun;120(3):239-48. doi: 10.1111/j.1600-0722.2012.00960.x. Epub 2012 Apr 21.

DOI:10.1111/j.1600-0722.2012.00960.x
PMID:22607341
Abstract

We evaluated the effects of preliminary etching of dentine on the stability of the bond created by one-step self-etch adhesives under different storage conditions. Adper Easy Bond (3M ESPE) and iBond Self-Etch (iBond SE; Heraeus Kulzer) were applied with an etch-and-rinse (i.e. after preliminary phosphoric acid etching for 15 s) or a self-etch approach. Resin-dentine bonded specimens were sectioned perpendicularly to the adhesive interface according to the 'non-trimming technique'. Beams were stored in artificial saliva for 24 h, 6 months, or 1 yr at 37°C, or in 10% NaOCl for 5 h at room temperature, and then stressed until failure; the microtensile bond strengths were calculated. Interfacial nanoleakage of additional teeth was evaluated using light microscopy or transmission electron microscopy. Adper Easy Bond showed higher bond strength than iBond SE, regardless of the dentine treatment. Similar microtensile bond strength results were obtained for teeth subjected to artificial ageing in 10% NaOCl for 5 h at room temperature and for teeth stored in artificial saliva for 6 months at 37°C. The additional etching step increased the microtensile bond strength for Adper Easy Bond and iBond SE. This study supports the use of one-step adhesives on etched dentine because of the increased bond strength compared with their application onto smear-layer-covered dentine, regardless of storage conditions.

摘要

我们评估了牙本质预酸蚀对一步法自酸蚀粘结剂在不同储存条件下形成的粘结稳定性的影响。应用Adper Easy Bond(3M ESPE)和iBond自酸蚀粘结剂(iBond SE;贺利氏古莎),采用酸蚀冲洗法(即在磷酸预酸蚀15秒后)或自酸蚀法。根据“非修整技术”,将树脂-牙本质粘结标本垂直于粘结界面进行切片。梁状标本在37°C下于人工唾液中储存24小时、6个月或1年,或在室温下于10%次氯酸钠中储存5小时,然后施加应力直至破坏;计算微拉伸粘结强度。使用光学显微镜或透射电子显微镜评估额外牙齿的界面纳米渗漏情况。无论牙本质处理方式如何,Adper Easy Bond的粘结强度均高于iBond SE。对于在室温下于10%次氯酸钠中人工老化5小时的牙齿以及在37°C下于人工唾液中储存6个月的牙齿,获得了相似的微拉伸粘结强度结果。额外的酸蚀步骤提高了Adper Easy Bond和iBond SE的微拉伸粘结强度。本研究支持在酸蚀牙本质上使用一步法粘结剂,因为与应用于覆盖有玷污层的牙本质相比,无论储存条件如何,其粘结强度均有所提高。

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