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钙钠磷硅酸盐对树脂-牙本质界面的生物活性作用:微拉伸粘结强度、扫描电子显微镜及共聚焦显微镜研究

Bioactive effects of a calcium/sodium phosphosilicate on the resin-dentine interface: a microtensile bond strength, scanning electron microscopy, and confocal microscopy study.

作者信息

Profeta Andrea C, Mannocci Francesco, Foxton Richard M, Thompson Ian, Watson Timothy F, Sauro Salvatore

机构信息

Biomaterials, Biomimetics and Biophotonics Research Group B3, King's College London Dental Institute, Guy's Hospital, London, UK.

出版信息

Eur J Oral Sci. 2012 Aug;120(4):353-62. doi: 10.1111/j.1600-0722.2012.00974.x. Epub 2012 Jul 3.

Abstract

This study evaluated, through microtensile bond strength (μTBS) testing, the bioactive effects of a calcium/sodium phosphosilicate (BAG) at the resin-dentine interface after 6 months of storage in phosphate buffer solution (PBS). Confocal laser scanning microscopy (CLSM) and scanning electron microscopy (SEM) were also performed. Three bonding protocols were evaluated: (i) RES-Ctr (no use of BAG), (ii) BAG containing adhesive (BAG-AD), and (iii) BAG/H (3) PO (4) before adhesive (BAG-PR). The dentin-bonded specimens were prepared for μTBS testing, which was carried out after 24 h or 6 months of storage in PBS. Scanning electron microscopy ultramorphology analysis was performed after debonding. Confocal laser scanning microscopy was used to evaluate the morphological and nanoleakage changes induced by PBS storage. High μTBS values were achieved in all groups after 24 h of storage in PBS. Subsequent to 6 months of storage in PBS the specimens created using the BAG-AD bonding approach still showed no significant reduction in μTBS. Moreover, specimens created using the BAG-AD or the BAG-PR approach showed an evident reduction of nanoleakage after prolonged storage in PBS. The use of BAG-containing adhesive may enhance the durability of the resin-dentine bonds through therapeutic/protective effects associated with mineral deposition within the bonding interface and a possible interference with collagenolytic enzyme activity (matrix metalloproteinases) responsible for the degradation of the hybrid layer.

摘要

本研究通过微拉伸粘结强度(μTBS)测试,评估了钙/钠磷硅酸盐(BAG)在磷酸盐缓冲溶液(PBS)中储存6个月后在树脂-牙本质界面的生物活性作用。还进行了共聚焦激光扫描显微镜(CLSM)和扫描电子显微镜(SEM)观察。评估了三种粘结方案:(i)RES-Ctr(不使用BAG),(ii)含BAG的粘合剂(BAG-AD),以及(iii)在粘合剂之前使用BAG/H₃PO₄(BAG-PR)。制备用于μTBS测试的牙本质粘结标本,该测试在PBS中储存24小时或6个月后进行。脱粘后进行扫描电子显微镜超微形态分析。使用共聚焦激光扫描显微镜评估PBS储存引起的形态和纳米渗漏变化。在PBS中储存24小时后,所有组均获得了较高的μTBS值。在PBS中储存6个月后,使用BAG-AD粘结方法制备的标本的μTBS仍未显示出显著降低。此外,使用BAG-AD或BAG-PR方法制备的标本在PBS中长时间储存后纳米渗漏明显减少。使用含BAG的粘合剂可能通过与粘结界面内矿物质沉积相关的治疗/保护作用以及对负责混合层降解的胶原olytic酶活性(基质金属蛋白酶)的可能干扰来提高树脂-牙本质粘结的耐久性。

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