Biological Effects of High Radiofrequency Radiation on Wistar Rats: A Literature Review

Timothy A Attah, Benjamin Ayantunji, A. Adamu, Ameh Omede, Jeffree Leleji, Solomon Hussiani, John-Paul Enemali, Zainab Ibrahim Suleiman, Charity Dumbiri, Ishaya Bwala, Caleb Polok
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Abstract

Aim and Objective Despite the growing concerns about the relationship between exposure to radiofrequency radiation (RFR) and detrimental health effects due to the changes in biological processes of experimental animals, there is still ongoing debate on the significance of these findings in causing significant public health problems with the growing advancement in internet technology. The aim of this study is to review existing literature on the effects of high RFR on wistar rats. Method A search was conducted on Google scholar and PubMed to identify relevant peer-reviewed articles to be included into the review. Studies eligible for inclusion included free full text articles on wistar rats exposed to ≥ 2.45GHz RFR conducted in the past 5 years. Studies included in this review were written or transcribed in English language. From 286 titles, 36 eligible studies were included in the review and assessed for quality using the Strengthening the Report of Observational Studies in Epidemiology – Veterinary Extension (STROBE-Vet) quality assessment tool. Results Studies included in this review generally had good quality (>60%) based on the STROBE-Vet assessment. This review identified numerous biological changes in wistar rats exposed to high RFR including variations in biochemical, cholinergic, genetic, histopathologic, psychological, optical, and dermatological parameters. In this review, studies identified variations in protein and liver enzymes while high RFR was found to induce oxidative stress and cellular damage of exposed wistar rats compared to the unexposed groups. This was seen in the changes in protein, lipids, enzymatic and non-enzymatic antioxidants. Studies also identified changes in expression of genes and neurotransmitters with imbalance in hormones. In addition, this review identified structural changes of cells, tissues and organs indicative of apoptosis, damage and death. Exposed rats were identified to have behavioral changes indicative of anxiety and memory decline while studies identified optical and dermatologic changes in exposed rats compared to the unexposed. Conclusion With numerous biological changes identified in wistar rats exposed to high RFR, there is an increasing risk of detrimental health events giving the advancement in internet technology and limited regulations to control exposures to RFR. Therefore, studies should be conducted to identify strategies to mitigate human exposure to RFR while policies are developed and enforced to protect human health.
高频辐射对Wistar大鼠的生物学效应:文献综述
目的和目的尽管人们越来越担心暴露于射频辐射(RFR)与实验动物生物过程变化造成的有害健康影响之间的关系,但随着互联网技术的不断进步,这些发现在造成重大公共卫生问题方面的意义仍在争论中。本研究的目的是回顾关于高RFR对wistar大鼠影响的现有文献。方法在谷歌学者和PubMed上进行搜索,以确定将被纳入综述的相关同行评审文章。符合入选条件的研究包括在过去5年中对暴露于≥2.45GHz RFR的wistar大鼠进行的免费全文文章。这篇综述中包含的研究是用英语书写或转录的。在286个标题中,36项符合条件的研究被纳入审查,并使用加强流行病学观察研究报告-兽医推广(STROBE Vet)质量评估工具进行质量评估。结果根据STROBE兽医评估,纳入本综述的研究总体质量良好(>60%)。这篇综述确定了暴露于高RFR的wistar大鼠的许多生物学变化,包括生化、胆碱能、遗传、组织病理学、心理、光学和皮肤学参数的变化。在这篇综述中,研究确定了蛋白质和肝酶的变化,同时发现与未暴露组相比,高RFR可诱导暴露的wistar大鼠的氧化应激和细胞损伤。这体现在蛋白质、脂质、酶和非酶抗氧化剂的变化中。研究还发现,基因和神经递质的表达变化与激素失衡有关。此外,这篇综述还确定了细胞、组织和器官的结构变化,表明细胞凋亡、损伤和死亡。暴露大鼠的行为变化表明焦虑和记忆力下降,而研究发现,与未暴露大鼠相比,暴露大鼠在光学和皮肤学方面发生了变化。结论在暴露于高RFR的wistar大鼠中发现了许多生物学变化,随着互联网技术的进步和控制RFR暴露的法规的限制,有害健康事件的风险增加。因此,在制定和执行保护人类健康的政策的同时,应进行研究,以确定减少人类接触RFR的策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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