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Effect of chlorhexidine application methods on microtensile bond strength to dentin in Class I cavities.

机译:洗必太的应用方法对I类腔中与牙本质的微拉伸结合强度的影响。

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OBJECTIVE: To evaluate the influence of chlorhexidine with different application methods on the microtensile bond strength (microTBS) to dentin in Class I cavities. METHODS: Flat dentinal surfaces with Class I cavities (4 mm long, 4 mm wide, 2 mm deep) in 50 molars were bonded with Adper Single Bond 2 etch-and-rinse adhesive system after: 1) Chlorhexidine (CHX) + rinsing + etching; 2) CHX + no rinsing + etching; 3) Etching + CHX + rinsing; 4) Etching + CHX + no rinsing; 5) Etching only as a control group. Resin composite buildups were constructed with Z-350 (3M ESPE) using a bulk method and they were polymerized for 40 seconds. For each condition, half of the specimens were immediately submitted to microtensile bond strength and half of the same group was submitted to 10,000 cycles of thermocycling between 5 degrees C and 55 degrees C before testing. The data were analyzed using the two-way ANOVA and Student t-test at a 95% significance level. RESULTS: Chlorhexidine pretreatment did not affect the bond strength of specimens tested at the immediate testing period, regardless of the application method used, compared to the control group. However, after 10,000 thermocycles, a significant bond strength reduction was found in the control group. In general, the chlorhexidine application method did not demonstrate a significant difference among the groups treated with chlorhexidine. However, there was a significant difference after thermocycling in the groups treated with chlorhexidine before etching and no significant difference in the groups treated with chlorhexidine after etching. CONCLUSION: Considering the amount of reduction in bond strength after thermocycling, the current study showed improved dentin bond strength with chlorhexidine when used after etching.
机译:目的:评价洗必泰对Ⅰ类腔内与牙本质的微拉伸结合强度(microTBS)的影响。方法:在以下情况下,用Adper Single Bond 2蚀刻漂洗胶粘剂系统粘结具有50个磨牙的I类空腔(长4 mm,宽4 mm,深2 mm)的平坦牙本质表面,方法如下:1)洗必泰(CHX)+漂洗+蚀刻2)CHX +无需冲洗+蚀刻; 3)蚀刻+ CHX +冲洗; 4)蚀刻+ CHX +不冲洗; 5)仅作为对照组进行蚀刻。使用Z-350(3M ESPE)通过本体法构建树脂复合物堆积物,并将其聚合40秒。对于每种条件,在测试前,将一半样品立即置于微拉伸粘结强度下,将同一组样品的一半置于5摄氏度至55摄氏度之间进行10,000次热循环。使用双向方差分析和Student t检验以95%的显着性水平分析数据。结果:与对照组相比,氯己定预处理并不影响在即刻测试期间测试的样品的粘结强度,而与所使用的施用方法无关。但是,经过10,000次热循环后,对照组的粘合强度明显降低。通常,洗必太的使用方法在用洗必太治疗的组之间没有显示出显着差异。但是,在热循环后,蚀刻前用洗必泰处理的组有显着差异,蚀刻后用洗必泰处理的组无显着差异。结论:考虑到热循环后粘结强度降低的程度,目前的研究表明,蚀刻后使用时,洗必泰具有改善的牙本质粘结强度。

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