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牙本质的碳二亚胺交联作用 5 年后。

Dentin Cross-linking Effect of Carbodiimide After 5 Years.

机构信息

Department of Biomedical and Neuromotor Sciences, University of Bologna, Bologna, Italy.

Department of Surgical Sciences, University of Turin, Torino, Italy.

出版信息

J Dent Res. 2021 Sep;100(10):1090-1098. doi: 10.1177/00220345211014799. Epub 2021 May 19.

Abstract

Carbodiimide (EDC)-based dentin primers preserve hybrid layer (HL) integrity. However, aging >1 y has not been investigated. The present study examined whether the cross-linking effect of EDC was reflected in dentin bond strength, endogenous enzymatic activity, and the chemical profile of the HL after 5-y aging in artificial saliva. Noncarious human third molars ( = 42) were cut to expose middle/deep coronal dentin and treated as follows: group 1, dentin etched with 35% HPO, pretreated with a 0.3M aqueous EDC primer for 1 min and restored with XP Bond (Dentsply Sirona); group 2, as in group 1 but without EDC pretreatment; group 3, Clearfil SE Bond (Kuraray-Noritake) primer applied to dentin surface, followed by EDC pretreatment as in group 1 and application of bond; group 4, as in group 3 without EDC pretreatment. After composite buildup, the specimens were cut into sticks or slabs, depending on the experiment. All tests were performed at baseline (T0) and after 5 y of aging (T5) in artificial saliva at 37 °C. Microtensile bond strength (µTBS) was tested at a crosshead speed of 1 mm/min until failure. Endogenous enzymatic activity was investigated with in situ zymography. The chemical profile of HL was determined via Raman spectroscopy. Three-way analysis of variance and post hoc Tukey test were used to analyze µTBS and in situ zymography data (α = 0.05). EDC pretreatment and aging significantly influenced µTBS and in situ zymography results ( < 0.05). Higher bond strength and lower gelatinolytic activity were identified in the EDC-treated groups at T5 ( < 0.05), especially in the etch-and-rinse groups. Raman spectra revealed less defined amide III peaks in control specimens at T5. The EDC cross-linking effect persisted in the HL for 5 y in terms of bond strength, collagen structure preservation, and dentinal enzyme silencing.

摘要

基于碳二亚胺 (EDC) 的牙本质底漆可保持混合层 (HL) 的完整性。然而,尚未研究过超过 1 年的老化情况。本研究旨在探讨在人工唾液中 5 年老化后,EDC 的交联作用是否会反映在牙本质粘结强度、内源性酶活性和 HL 的化学特征上。从无龋的第三磨牙中(n=42)切取暴露中/深层冠部牙本质,并进行如下处理:组 1,用 35% HPO 酸蚀牙本质,用 0.3M 水溶液 EDC 底漆预处理 1 分钟,并用 XP Bond(Dentsply Sirona)修复;组 2,同组 1 但无 EDC 预处理;组 3,将 Clearfil SE Bond(Kuraray-Noritake)底漆应用于牙本质表面,然后按组 1 进行 EDC 预处理和粘结;组 4,同组 3 但无 EDC 预处理。复合树脂堆筑后,根据实验将标本切割成棒状或片状。所有测试均在基线(T0)和人工唾液中 37°C 5 年老化后(T5)进行。微拉伸粘结强度(µTBS)测试采用十字头速度 1mm/min,直至失效。通过原位酶谱法研究内源性酶活性。通过拉曼光谱法测定 HL 的化学特征。采用三因素方差分析和事后 Tukey 检验分析 µTBS 和原位酶谱数据(α=0.05)。EDC 预处理和老化显著影响 µTBS 和原位酶谱结果(<0.05)。在 T5 时,EDC 处理组的粘结强度更高,胶酶活性更低(<0.05),特别是在酸蚀冲洗组中。T5 时,对照组标本的酰胺 III 峰特征不明显。从拉曼光谱分析来看,在牙本质粘结强度、胶原结构保存和牙本质酶沉默方面,EDC 的交联作用在 HL 中可维持 5 年。

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