非电离辐射对动物模型中的肝脏和功能测试的影响
Somayeh Farahani1,2, Fatemeh Kadivar1, Fatemeh Khajeh3
1Ionizing and Non-ionizing Radiation Protection Research Center, Shiraz University of Medical Sciences, Shiraz, Iran.
Journal of biomedical physics & engineering
|April 22, 2025
概括
暴露于Wi-Fi和干扰信号显示轻度炎症,但对大鼠和肝功能没有严重的健康影响. 长时间暴露可能会影响器官功能,因此需要进一步调查电磁辐射对健康的风险.
科学领域:
- 环境健康 环境健康
- 毒理学 毒理学 毒理学
- 生物化学 生物化学
背景情况:
- 不电离电磁辐射 (EMR) 的使用越来越多,引发了公众健康的担忧.
- 电磁辐射暴露对健康的潜在影响需要进行彻底的科学研究.
研究的目的:
- 在动物模型中调查Wi-Fi和干扰信号对和肝功能的影响.
- 为了评估对非电离型EMR暴露的生物化学变化的反应.
主要方法:
- 威斯塔尔阿尔比诺老鼠被分为Wi-Fi,干扰器和虚假组.
- 在两周内,动物每天暴露在EMR中2小时.
- 分析了和肝脏组织和血液样本的生物化学参数.
主要成果:
- 在和肝脏组织中观察到轻微的炎症反应.
- 大多数测试的生物化学标记物 (肌素,白蛋白,BUN,脂质, bilirubin,ALP) 没有显著的变化.
- 在干扰组中观察到低密度脂蛋白 (LDL) 的显著下降,在Wi-Fi和假组之间观察到AST和ALT水平的显著差异.
结论:
- 个体器官的特征对于理解EMR暴露的影响至关重要.
- 长时间或更近距离接触EMR源可能导致器官功能发生显著变化.
相关概念视频
Effect of Hepatic Disease on Pharmacokinetics: Drug Dosing and Hepatic Blood Flow
347
Chronic liver disease significantly impacts drug metabolism due to alterations in hepatic blood flow and enzyme accessibility. This disruption affects the body's pharmacokinetics—the movement and processing of drugs within the system. Key enzymes crucial for metabolizing medications become less accessible, changing how drugs are processed and utilized. Furthermore, liver disease influences the synthesis of plasma proteins, such as albumin and globulins, which play critical roles in drug...
347
Effect of Hepatic Disease on Pharmacokinetics: Pathophysiologic Assessment and Liver Function Test
261
In clinical practice, the direct measurement of hepatic blood flow to evaluate liver function presents significant challenges due to the intricate and specialized nature of the necessary techniques. Consequently, healthcare professionals often rely on empirical estimates derived from thorough patient examinations and liver function tests to gauge liver health. Among the tools at their disposal, the Child–Pugh and MELD scoring systems stand out for their ability to categorize and assess...
261
Toxicity Testing in Animals
167
Toxicity tests in animals are grounded on two main assumptions: first, the effects observed in laboratory animals can be extrapolated to humans, especially when adjusted for body surface area; second, high-dose exposure in animals is essential to identify potential human hazards from lower doses. This is based on the quantal dose-response concept, which faces the challenge of extrapolating results from relatively few test animals to much larger human populations. For example, a 0.01% incidence...
167


