首页> 外文期刊>Pharmacology, Biochemistry and Behavior >Protective effect of pregnanolone against lipoperoxidation and free radicals generation induced in hypothalamus of ovariectomized rats submitted to CO2 exposure.
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Protective effect of pregnanolone against lipoperoxidation and free radicals generation induced in hypothalamus of ovariectomized rats submitted to CO2 exposure.

机译:孕烷酮对暴露于CO2的去卵巢大鼠下丘脑中脂质过氧化和自由基产生的保护作用。

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摘要

Several studies support an association between gonadal hormones and oxidative state. This study aimed to determine the consequence of the absence of ovarian hormones on the oxidative status of animals submitted to acute stress induced by CO(2) inhalation. We also evaluated the effect of pregnanolone administration upon the oxidative status in distinct brain structures of ovariectomized (OVX) rats exposed to CO(2). Female rats were divided into intact and OVX and exposed or unexposed to CO(2). Oxidative status was evaluated by 2',7'-dichlorofluorescein (DCF) assay, assessment of malondialdehyde (MDA), as an indicator of lipoperoxidation (through the thiobarbituric acid-reactive substances assay, TBARS), and the total antioxidant reactivity (TAR). Both DCF and TBARS were increased in the hypothalamus of animals submitted to OVX and stress. Nevertheless, free radical production and MDA levels were not affected in either condition alone. In the cerebral cortex, lower MDA levels were observed in OVX animals. Pregnanolone administered to rats submitted to CO(2)+OVX resulted in reduced MDA levels and free radicals production in hypothalamus. We suggest that ovarian hormones may protect the hypothalamus against oxidative stress, particularly when the animals are submitted to challenges. Pregnanolone may protect, at least in part, the hypothalamus of OVX rats from oxidative stress.
机译:一些研究支持性腺激素与氧化状态之间的关联。这项研究的目的是确定缺乏卵巢激素对遭受CO(2)吸入诱导的急性应激的动物氧化状态的影响。我们还评估了孕烯醇酮给药对暴露于CO(2)的卵巢切除(OVX)大鼠不同脑结构中氧化状态的影响。雌性大鼠分为完整和OVX,暴露或未暴露于CO(2)。氧化状态通过2',7'-二氯荧光素(DCF)测定,丙二醛(MDA)评估(作为脂过氧化的指标)(通过硫代巴比妥酸反应性物质测定(TBARS))和总抗氧化剂反应性(TAR)进行评估。 DCF和TBARS都在接受OVX和压力的动物的下丘脑中增加。尽管如此,自由基的产生和MDA的水平并不受这两种情况的影响。在大脑皮层中,在OVX动物中观察到较低的MDA水平。对大鼠进行孕烯醇酮提交CO(2)+ OVX导致下丘脑MDA水平降低和自由基产生。我们建议卵巢激素可以保护下丘脑免受氧化应激,尤其是当动物受到挑战时。孕烷酮可能至少部分保护OVX大鼠的下丘脑免受氧化应激。

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