次氯酸钠不同浓度和暴露时间对人牙本质结构、组成和力学性能的影响。

Tian-Feng Wang, Xiao-Wei Feng, Yi-Xue Gao, Man Wang, Yi-Ning Wang, Yue Sa, Tao Jiang
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引用次数: 6

摘要

本研究评价了不同浓度的次氯酸钠(NaOCl)在体外对人牙本质结构、组成和力学性能的影响。新拔前磨牙牙本质板60块,随机分为4组(n=15),分别用1%、5%、10% NaOCl和蒸馏水(对照组)处理60 min。处理前、处理后10 min、处理后60 min分别进行衰减全反射红外(ATR-IR)光谱、拉曼光谱和x射线衍射(XRD)分析。并进行了扫描电镜(SEM)和抗弯强度试验。结果表明,NaOCl组牙本质发生形态学改变,而对照组牙本质无明显变化。双向重复测量方差分析显示,随着时间和浓度的增加,NaOCl组的碳酸盐矿物比(C:M)、拉曼相对强度(RRI)、a轴、C轴长度和半峰全宽(FWHM)与对照组差异不显著(P>0.05)。然而,NaOCl组随着浓度的增加和时间的延长,矿物:基质比(M:M)升高,抗弯强度下降(P0.05), 1% NaOCl组在10 min内形态变化不明显。结果表明,NaOCl对牙本质无机矿物无明显影响;但它破坏和消除了有机含量的浓度和时间依赖性,从而影响了牙本质的抗弯强度和韧性。此外,在10分钟内灌洗1% NaOCl可以最大限度地减少NaOCl对根管治疗过程中牙本质结构和力学性能的影响。
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Effects of different concentrations and exposure time of sodium hypochlorite on the structural, compositional and mechanical properties of human dentin.

This study evaluated the effects of sodium hypochlorite (NaOCl) with different concentrations and exposure time on the structural, compositional and mechanical properties of human dentin in vitro. Sixty dentin slabs were obtained from freshly extracted premolars, randomly distributed into four groups (n=15), and treated with 1%, 5%, 10% NaOCl and distilled water (control group), respectively, for a total of 60 min. Attenuated total reflection infrared (ATR-IR) spectroscopy, Raman spectroscopy and X-ray diffraction (XRD) were carried out before, 10 min and 60 min after the treatment. Scanning electron microscopy (SEM) and flexural strength test were conducted as well. The results showed that dentins experienced morphological alterations in the NaOCl groups, but not in the control group. Two-way repeated-measures analysis of variance revealed that the carbonate:mineral ratio (C:M), Raman relative intensity (RRI), a-axis, c-axis length and full width at half maximum (FWHM) with the increase of time and concentration in the NaOCl groups were not significantly different from those in the control group (P>0.05). Nevertheless, the mineral:matrix ratio (M:M) increased and the flexural strength declined with the increase of concentration and the extension of time in the NaOCl groups (P<0.05). Additionally, it was found that the M:M and the flexural strength remained unchanged after 1% NaOCl treatment (P>0.05), and the morphology changes were unnoticeable within 10 min in 1% NaOCl group. These results indicated that NaOCl has no significant effects on the inorganic mineral of human dentin; but it undermines and eliminates the organic content concentration- and time-dependently, which in turn influences the flexural strength and toughness of dentins. In addition, an irrigation of 1% NaOCl within 10 min can minimize the effects of NaOCl on the structural and mechanical properties of dentin during root canal treatment.

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