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Effect of mobile phone signal radiation on epigenetic modulation in the hippocampus of Wistar rat

机译:手机信号辐射对Wistar大鼠海马表观遗传调节的影响

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摘要

Exponential increase in mobile phone uses, given rise to public concern regarding the alleged deleterious health hazards as a consequence of prolonged exposure. In 2018, the U.S. National toxicology program reported, two year toxicological studies for potential health hazards from exposure to cell phone radiations. Epigenetic modulations play a critical regulatory role in many cellular functions and pathological conditions. In this study, we assessed the dose-dependent and frequency-dependent epigenetic modulation (DNA and Histone methylation) in the hippocampus of Wistar rats. A Total of 96 male Wistar rats were segregated into 12 groups exposed to 900 MHz, 1800 MHz and 2450 MHz RF-MW at a specific absorption rate (SAR) of 5.84 × 10~(-4) W/kg, 5.94 × 10~(-4)W/ kg and 6.4 × 10~(-4) W/kg respectively for 2 h per day for 1-month, 3-month and 6-month periods. At the end of the exposure duration, animals were sacrificed to collect the hippocampus. Global hippocampal DNA methylation and histone methylation were estimated by ELISA. However, DNA methylating enzymes, DNA methyl-transferasel (DNMT1) and histone methylating enzymes euchromatic histone methylthransferasel (EHMT1) expression was evaluated by real-time PCR, as well as further validated with Western blot. Alteration in epigenetic modulation was observed in the hippocampus. Global DNA methylation was decreased and histone methylation was increased in the hippocampus. We observed that microwave exposure led to significant epigenetic modulations in the hippocampus with increasing frequency and duration of exposure. Microwave exposure with increasing frequency and exposure duration brings significant (p < 0.05) epigenetic modulations which alters gene expression in the hippocampus.
机译:由于长期暴露的后果,移动电话使用的指数增加,引起了对所谓有害健康危害的公众关注。 2018年,美国国家毒理学计划报道,两年毒理学研究,用于接触手机辐射的潜在健康危害。表观遗传调制在许多细胞功能和病理条件下发挥着临界调节作用。在该研究中,我们评估了Wistar大鼠海马的剂量依赖性和依赖性的表观遗传调制(DNA和组蛋白甲基化)。将96只雄性WISTAR大鼠分离为暴露于900MHz,1800MHz,2450MHz的12组,以5.84×10〜( - 4)W / kg,5.94×10〜的特定吸收率(SAR)。 (-4)kg和6.4×10〜(-4)w / kg分别为每天2小时,为1个月,3个月和6个月的时间。在暴露持续时间结束时,处死动物以收集海马。通过ELISA估计全局海马DNA甲基化和组蛋白甲基化。然而,通过实时PCR评估DNA甲基化酶,DNA甲基 - 转移酶(DNA甲基转移酶(DNMT1)和组甲基化酶的欧洲甲基甲基儿化合物(EHMT1)表达,还通过Western印迹进行进一步验证。在海马中观察到表观遗传调节的改变。全局DNA甲基化降低,在海马中增加组蛋白甲基化。我们观察到微波暴露导致海马的显着表观遗传调制,随着曝光频率和持续时间而增加。微波暴露随着频率和暴露持续时间的增加带来了显着的(P <0.05)表观遗传调节,其改变了海马中的基因表达。

著录项

  • 来源
    《Environmental research》 |2021年第1期|110297.1-110297.10|共10页
  • 作者单位

    Environmental Biochemistry and Molecular Biology Laboratory Department of Biochemistry University College of Medical Sciences & GTB Hospital (University of Delhi) Dilshad Garden Delhi 110095 India;

    Environmental Biochemistry and Molecular Biology Laboratory Department of Biochemistry University College of Medical Sciences & GTB Hospital (University of Delhi) Dilshad Garden Delhi 110095 India;

    Department of Pathology University College of Medical Sciences & GTB Hospital (University of Delhi) Dilshad Garden Delhi 110095 India;

    Environmental Biochemistry and Molecular Biology Laboratory Department of Biochemistry University College of Medical Sciences & GTB Hospital (University of Delhi) Dilshad Garden Delhi 110095 India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Mobile phone; Microwave exposure; Epigenetic modulations; Hippocampus; Wistar rat;

    机译:手机;微波曝光;表观遗传调制;海马;Wistar Rat.;

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