首页> 外文期刊>Journal of Applied Oral Science >Proteomic analysis of the acquired enamel pellicle formed on human and bovine tooth: a study using the Bauru in situ pellicle model (BISPM)
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Proteomic analysis of the acquired enamel pellicle formed on human and bovine tooth: a study using the Bauru in situ pellicle model (BISPM)

机译:人和牛牙上形成的牙釉质防护膜的蛋白质组学分析:使用Bauru原位防护膜模型(BISPM)的研究

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The acquired enamel pellicle (AEP) is an organic film, bacteria-free, formed in vivo as a result of the selective adsorption of salivary proteins and glycoproteins to the solid surfaces exposed to the oral environment. Objective: This study aimed to compare the proteomic profile of AEP formed in situ on human and bovine enamel using a new intraoral device (Bauru in situ pellicle model - BISPM). Material and Methods: One hundred and eight samples of human and bovine enamel were prepared (4×4 mm). Nine subjects with good oral conditions wore a removable jaw appliance (BISPM) with 6 slabs of each substrate randomly allocated. The AEP was formed during the morning, for 120 minutes, and collected with an electrode filter paper soaked in 3% citric acid. This procedure was conducted in triplicate and the pellicle collected was processed for analysis by LC-ESI-MS/MS. The obtained mass spectrometry MS/MS spectra were searched against human protein database (SWISS-PROT). Results: The use of BISPM allowed the collection of enough proteins amount for proper analysis. A total of 51 proteins were found in the AEP collected from the substrates. Among them, 15 were common to both groups, 14 were exclusive of the bovine enamel, and 22 were exclusive of the human enamel. Proteins typically found in the AEP were identified, such as Histatin-1, Ig alpha-1, Ig alpha 2, Lysozyme C, Statherin and Submaxillary gland androgen-regulated protein 3B. Proteins not previously described in the AEP, such as metabolism, cell signaling, cell adhesion, cell division, transport, protein synthesis and degradation were also identified. Conclusion: These results demonstrate that the proteins typically found in the AEP appeared in both groups, regardless the substrate. The BISPM revealed to be a good device to be used in studies involving proteomic analysis of the AEP.
机译:获得的牙釉质防护膜(AEP)是一种无细菌的有机膜,是由于唾液蛋白和糖蛋白选择性吸附到暴露于口腔环境的固体表面上而在体内形成的。目的:本研究旨在比较使用新型口腔内装置(Bauru原位防护膜模型-BISPM)在人和牛牙釉质上原位形成的AEP的蛋白质组学特征。材料和方法:制备了118个人类和牛牙釉质样品(4×4 mm)。九名口腔状况良好的受试者佩戴了可移动的下颌矫治器(BISPM),每种基底随机分配了6个平板。 AEP形成于早晨,持续120分钟,并用浸入3%柠檬酸的电极滤纸收集。该过程一式三份进行,收集的防护膜经过LC-ESI-MS / MS分析处理。针对人类蛋白质数据库(SWISS-PROT)搜索获得的质谱MS / MS光谱。结果:使用BISPM可以收集足够数量的蛋白质以进行适当的分析。从底物收集的AEP中共发现51种蛋白质。其中,两组共有15个,牛珐琅质不包括14个,人类珐琅质不包含22个。鉴定出通常在AEP中发现的蛋白质,例如Histatin-1,Ig alpha-1,Ig alpha 2,溶菌酶C,Statherin和上颌下腺雄激素调节蛋白3B。还鉴定了AEP之前未描述的蛋白质,例如代谢,细胞信号传导,细胞粘附,细胞分裂,转运,蛋白质合成和降解。结论:这些结果表明,无论底物是什么,在AEP中通常发现的蛋白质都出现在两组中。 BISPM被证明是用于涉及AEP蛋白质组学分析的研究的良好设备。

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