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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >An early treatment with 17-beta-estradiol is neuroprotective against the long-term effects of neonatal ionizing radiation exposure.
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An early treatment with 17-beta-estradiol is neuroprotective against the long-term effects of neonatal ionizing radiation exposure.

机译:17-β-雌二醇的早期治疗对新生儿电离辐射暴露的长期影响具有神经保护作用。

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摘要

Ionizing radiations can induce oxidative stress on target tissues, acting mainly through reactive oxygen species (ROS). The aim of this work was to investigate if 17-beta-estradiol (betaE) was able to prevent hippocampal-related behavioral and biochemical changes induced by neonatal ionizing radiation exposure and to elucidate a potential neuroprotective mechanism. Male Wistar rats were irradiated with 5 Gy of X-rays between 24 and 48 h after birth. A subset of rats was subcutaneously administered with successive injections of betaE or 17-alpha-estradiol (alphaE), prior and after irradiation. Rats were subjected to different behavioral tasks to evaluate habituation and associative memory as well as anxiety levels. Hippocampal ROS levels and protein kinase C (PKC) activity were also assessed. Results show that although betaE was unable to prevent radiation-induced hippocampal PKC activity changes, most behavioral abnormalities were reversed. Moreover, hippocampal ROS levels in betaE-treated irradiated rats approached control values. In addition, alphaE administered to irradiated animals was effective in preventing radiation-induced alterations. In conclusion, betaE was able to counteract behavioral and biochemical changes induced in irradiated animals, probably acting through an antioxidant mechanism.
机译:电离辐射可以在靶组织上引起氧化应激,主要通过活性氧(ROS)起作用。这项工作的目的是调查17-β-雌二醇(betaE)是否能够预防新生儿电离辐射暴露引起的海马相关行为和生化变化,并阐明潜在的神经保护机制。雄性Wistar大鼠在出生后24至48小时之间接受5 Gy的X射线照射。在辐照之前和之后,对大鼠的一个子集进行皮下注射,依次注射betaE或17-α-雌二醇(alphaE)。对大鼠进行不同的行为任务以评估其习惯性和联想记忆以及焦虑水平。还评估了海马ROS水平和蛋白激酶C(PKC)活性。结果表明,尽管betaE无法阻止辐射引起的海马PKC活性改变,但大多数行为异常都可以逆转。此外,经betaE处理的辐照大鼠的海马ROS水平接近对照值。另外,对被辐照的动物施用αE可有效预防辐射引起的改变。总之,betaE能够抵消受辐照动物的行为和生化变化,可能是通过抗氧化剂机制起作用的。

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