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Occupational Noise Exposure May Induce Oxidative DNA Damage

机译:职业噪声暴露可能导致氧化性DNA损伤

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Occupational noise enhances the risk of several cardiovascular and non-cardiovascular diseases. The reason behind the drastic effects of noise exposure is the excessive generation of reactive oxygen species molecules. The present study investigates oxidative stress due to occupational noise exposure in 192 male smoking workers exposed to normal noise (sound level ≤80 dBA), low noise (sound level 81-94 dBA), and loud noise (sound level ≥95 dBA). University-aged volunteers were selected for the normal sound exposed group. Drivers and conductors were selected for the low-noise exposed group, and workers of power loom factories were chosen for the high-noise exposed group. Oxidative stress was estimated using 8 OHdG as a biomarker for oxidative DNA damage. Serum aldosterone and serum cortisol level was estimated using the enzyme immunoassay method. Results indicated that 8 OHdG level was significantly different in different exposure groups. It was highest in the low-noise exposed group (0.370±0.017 ng/ml) and lowest in the normal-sound exposed group (0.22±0.01 ng/ml). Level of 8 OHdG in the high-noise exposed group was 0.29±0.00. There was no significant variation of aldosterone levels among different groups. Cortisol levels of both noise groups was higher than that of the normal sound group. It can be concluded that noise exposure induces stress in the Pakistani population. This stress leads to oxidative DNA damage.
机译:职业噪声增加了几种心血管和非心血管疾病的风险。噪声暴露产生巨大影响的原因是活性氧分子的过度生成。本研究调查了192名男性吸烟工人因职业噪声暴露而产生的氧化应激,这些男性暴露于正常噪声(声级≤80dBA),低噪声(声级81-94 dBA)和大声噪声(声级≥95dBA)中。选择大学年龄的志愿者作为正常的声音暴露组。低噪声暴露组选择了驾驶员和导体,高噪声暴露组选择了织机工厂的工人。使用8 OHdG作为氧化DNA损伤的生物标记物来估计氧化应激。血清醛固酮和血清皮质醇水平采用酶联免疫法测定。结果表明,不同暴露组的8 OHdG水平存在显着差异。在低噪声暴露组中最高(0.370±0.017 ng / ml),在正常声音暴露组中最低(0.22±0.01 ng / ml)。高噪声暴露组的8 OHdG水平为0.29±0.00。不同组之间的醛固酮水平没有显着差异。两个噪声组的皮质醇水平均高于正常声音组。可以得出结论,噪声暴露会在巴基斯坦人口中引起压力。这种压力导致DNA氧化损伤。

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