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手机电磁辐射对大鼠海马体蛋白质组的影响。

Effects of mobile phone electromagnetic radiation on rat hippocampus proteome.

机构信息

School of Environmental Sciences, Jawaharlal Nehru University, New Delhi, India.

Translational Health Group, International Center for Genetic Engineering and Biotechnology, New Delhi, India.

出版信息

Environ Toxicol. 2022 Apr;37(4):836-847. doi: 10.1002/tox.23447. Epub 2022 Jan 5.

Abstract

Worldwide, the number of mobile phone users has increased from 5.57 billion in 2011 to 6.8 billion in 2019. However, short- and long-term impact of the electromagnetic radiation emitting from mobile phones on tissue homeostasis with particular to brain proteome composition needs further investigation. In this study, we attempted a global proteome profiling study of rat hippocampus exposed to mobile phone radiation for 20 weeks (for 3 h/day for 5 days/week) to identify deregulated proteins and western blot analysis for validation. As a result, we identified 358 hippocampus proteins, of which 16 showed deregulation (log (exposed/sham) ≥ ±1.0, p-value <.05). Majority of these deregulated proteins grouped into three clusters sharing similar molecular pathways. A set of four proteins (Succinate-semialdehyde dehydrogenase: Aldh5a1, Na K transporting ATPase: Atp1b2, plasma membrane calcium transporting ATPase: PMCA and protein S100B) presenting each functional pathway were selected for validation. Western blot analysis of these proteins, in an independent sample set, corroborated the mass spectrometry findings. Aldh5a1 involve in cellular energy metabolism, both Atp1b2 and PMCA responsible for membrane transport and protein S100B have a neuroprotective role. In conclusion, we present a deregulated hippocampus proteome upon mobile phone radiation exposure, which might influence the healthy functioning of the brain.

摘要

全球范围内,手机用户数量从 2011 年的 55.7 亿增加到 2019 年的 68 亿。然而,手机发出的电磁辐射对组织内环境平衡的短期和长期影响,特别是对大脑蛋白质组组成,仍需要进一步研究。在这项研究中,我们尝试对暴露于手机辐射 20 周(每天 3 小时,每周 5 天)的大鼠海马体进行全蛋白质组分析,以鉴定失调蛋白,并通过 Western blot 分析进行验证。结果,我们鉴定了 358 种海马体蛋白,其中 16 种蛋白表达失调(log(暴露/假处理)≥±1.0,p 值<0.05)。这些失调蛋白多数聚集为三个共享相似分子途径的簇。选择了一组四个蛋白(琥珀酸半醛脱氢酶:Aldh5a1、Na+-K+转运 ATP 酶:Atp1b2、质膜钙转运 ATP 酶:PMCA 和 S100B 蛋白)用于验证。在一个独立样本组中,对这些蛋白进行 Western blot 分析,与质谱分析结果相符。Aldh5a1 参与细胞能量代谢,Atp1b2 和 PMCA 均负责膜转运,S100B 具有神经保护作用。总之,我们提出了手机辐射暴露后海马体蛋白质组失调,这可能会影响大脑的正常功能。

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