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工业噪声对牙髓周牙本质的影响——场发射扫描电子显微镜和能谱分析

Effects of industrial noise on circumpulpar dentin--a field emission scanning electron microscopy and energy dispersive spectroscopy analysis.

作者信息

Cavacas Maria Alzira, Tavares Vitor, Oliveira Maria João, Oliveira Pedro, Sezinando Ana, Martins dos Santos José

机构信息

Center for Interdisciplinary Research Egas Moniz, Health Sciences Institute Monte de Caparica, Portugal.

出版信息

Int J Clin Exp Pathol. 2013 Nov 15;6(12):2697-702. eCollection 2013.

Abstract

Chronic exposure to Industrial Noise (IN), rich in Low Frequency Noise (LFN), causes systemic fibrotic transformation and sustained stress. Dental wear, significantly increased with exposure to LFN, affects the teeth particularly through the circumpulpar dentin. Our goal is to understand the consequences of IN exposure on the circumpulpar dentin of Wistar rats. 10 Wistar rats were exposed to IN for 4 months, according to an occupationally simulated time schedule and 10 animals were used as age-matched controls. The first and the second upper and lower molars of each animal were processed for observation by Field Emission Scanning Electron Microscopy (FESEM) and Energy Dispersive Spectroscopy (EDS) analysis was performed. In exposed animals FESEM showed a 2.0 to 6.0 μm-dense mineral band between dentin and the pulp with no regular continuity with the tubules. This structure had a few tubules where the odontoblasts processes could be observed embedded within the band and collagen fibers were trapped inside. EDS analysis revealed that it was hydroxyapatite similar to dentin, with a higher carbon content. FESEM results show that the band may be tertiary reparative dentin formed by odontoblast-like cells, but the increased amount of carbon (EDS) could mean that it is sclerotic dentin. IN should be acknowledge as a strong stimulus, able to cause an injury to odontoblasts and to the formation of reparative tertiary dentin, in a process that may accelerate the aging of the teeth, either by direct impact of acoustic pressure pulsations or by increased stress and dental wear.

摘要

长期暴露于富含低频噪声(LFN)的工业噪声(IN)中会导致全身性纤维化转变和持续应激。牙齿磨损在暴露于LFN时显著增加,尤其通过牙髓周牙本质影响牙齿。我们的目标是了解IN暴露对Wistar大鼠牙髓周牙本质的影响。按照职业模拟时间表,将10只Wistar大鼠暴露于IN中4个月,另外10只动物作为年龄匹配的对照。对每只动物的第一和第二上、下颌磨牙进行处理,以便通过场发射扫描电子显微镜(FESEM)观察,并进行能量色散光谱(EDS)分析。在暴露的动物中,FESEM显示在牙本质和牙髓之间有一条2.0至6.0μm厚的致密矿化带,与牙本质小管没有规则的连续性。这种结构有一些小管,在其中可以观察到成牙本质细胞突起嵌入带内,并且胶原纤维被困在里面。EDS分析表明它是类似于牙本质的羟基磷灰石,碳含量较高。FESEM结果表明,这条带可能是由成牙本质样细胞形成的第三期修复性牙本质,但碳含量的增加(EDS)可能意味着它是硬化性牙本质。IN应被视为一种强烈的刺激因素,能够在一个可能加速牙齿老化的过程中,通过声压脉动的直接影响或通过增加的应激和牙齿磨损,对成牙本质细胞造成损伤并导致修复性第三期牙本质的形成。

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