探讨噪声暴露对雄性小鼠糖尿病、血糖、皮质醇水平及体重的影响

Ebrahim Taban, S. B. Mortazavi, S. Vosoughi, A. Khavanin
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引用次数: 2

摘要

噪声被认为是工业环境中的有害因素之一。它在不同方面影响人类健康,包括对听觉、视觉、神经和精神系统、激素、生理和精神系统的有害影响。重视激素对人体的影响似乎具有至关重要的意义。本研究的目的是探讨噪音暴露对叙利亚成年雄性小鼠血清葡萄糖和皮质醇水平变化的影响。将36只成年雄性叙利亚小鼠随机分为实验组和对照组。将大蒜粉添加到小鼠颗粒食物中(相当于每日饮食的1%),以研究其对皮质醇和葡萄糖血清水平的影响。小鼠颗粒食品中含有淀粉、葡萄糖、分离大豆蛋白等,是维生素A、C、B1、B2、B6的丰富资源。实验组小鼠在700 ~ 5700hz频率范围内接受强度为90dB的噪声暴露,注射链脲佐菌素(60mg/kg)。使用CoolEdit软件产生噪声,并将噪声分布到预制箱中,持续30天(8h/d)。在暴露期结束后24小时测量两组小鼠的空腹皮质醇和葡萄糖血清水平。结果表明,噪声暴露下非糖尿病和糖尿病受试者的血糖水平与对照组有显著差异(p <0.002)。噪声暴露下非糖尿病和糖尿病受试者的皮质醇水平与对照组有显著差异(p <0.002)。暴露于频率范围为700-5700Hz、强度为90dB的噪声中,血清葡萄糖和皮质醇水平升高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigating the effects of noise exposure on intensification of diabetes mellitus, serum glucose, cortisol level and body weight of the male mice
Noise is considered as one of the harmful factors at industrial environments. It affects human health in different aspects including harmful influences on auditory, vision, neurological and psychiatric systems, hormones, physiological and mental systems. Paying attention to the importance of hormonal effects on human body seems to possess crucial importance. The aim of the present study is to investigate the effects of noise exposure on variation of serum levels of glucose and cortisol at Syrian adult male mouse. 36 Syrian male adult mice were randomly categorized into two experiment and control groups. Garlic powder was added to the mice pelleted food meal (equal to 1% of their daily diet) to study its effect on the cortisol and glucose serum levels. The mice pelleted food contains starch, glucose, isolated soya protein, etc., which are the rich resources of A, C, B1, B2 and B6 vitamins. Streptozotocin (60mg/kg) was injected to the mice at experiment group which were under noise exposure with intensity of 90dB in frequency range of 700-5700Hz. Noise were generated using CoolEdit software and distributed to the fabricated box for 30 days (8h/d).  Fasting cortisol and glucose serum levels were measured for mice of both groups 24h after finishing the exposure period. Results indicated that the glucose serum level in non-diabetic and diabetic subjects under noise exposure had significant difference ( p <0.002) with the subjects at control group. Also, cortisol level in non-diabetic and diabetic subjects under noise exposure indicated significant difference ( p <0.002) with the subjects at control group. Exposure to noise with intensity of 90dB at frequency range of 700-5700Hz increases the glucose and cortisol serum levels.
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