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The correlation between the use of personal protective equipment and level wild-type p53 of dental technicians in Surabaya

机译:泗水牙科技术人员的个人防护装备的使用与野生型p53的相关性

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Background: Exposure of metals among dental technicians that come from the working environment can lead to the formation reactive oxygen species (ROS). ROS can cause mutations in the p53 gene (p53). The mutation is transversion mutation GuanineThymine. p53 mutations can lead to low expression of the wild-type p53 protein (p53). Wild-type p53 involved in many biological processes such as regulation of genes involved in cell cycle, cell growth after DNA damage, and apoptosis. However, exposure to metals among dental technicians can be prevented through the use of personal protective equipment (PPE) during work. Purpose: The purpose of this study was to analyze the correlation between the use of personal protective equipment to wild-type p53 protein levels among dental technicians in Surabaya. Method: This study was observational analytic with cross sectional approach. 40 samples were taken by random sampling. Data were retrieved through interviews and observations. Wild-type p53 was analyzed from saliva with indirect ELISA method. Analysis of data used Kolmogorov Smirnov normality test and a Pearson correlation test. Value significance was p<0.05 (95% confidence level). Result: There was a significant association between the use of personal protective equipment with wild-type p53 levels with p=0.002 Conclusion: The use PPE properly is positively correlated with the wild-type p53 protein levels of dental technicians in Surabaya.
机译:背景:来自工作环境的牙科技术人员所接触的金属会导致形成活性氧(ROS)。 ROS可引起p53基因(p53)突变。该突变是鸟嘌呤胸腺嘧啶的颠倒突变。 p53突变可导致野生型p53蛋白(p53)的低表达。野生型p53参与许多生物过程,例如调控参与细胞周期,DNA损伤后细胞生长和凋亡的基因。但是,可以通过在工作期间使用个人防护设备(PPE)来防止牙科技术人员接触金属。目的:本研究的目的是分析泗水牙科技术人员使用个人防护设备与野生型p53蛋白水平之间的相关性。方法:本研究采用横断面方法进行观察分析。通过随机抽样获得40个样品。通过访谈和观察来检索数据。用间接ELISA法从唾液中分析野生型p53。数据分析使用Kolmogorov Smirnov正态性检验和Pearson相关检验。数值显着性为p <0.05(95%置信度)。结果:使用个人防护设备与野生型p53水平(p = 0.002)之间存在显着关联。结论:正确使用PPE与泗水的牙科技师的野生型p53蛋白水平呈正相关。

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