首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Estrogen modifies stress response of catecholamine biosynthetic enzyme genes and cardiovascular system in ovariectomized female rats.
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Estrogen modifies stress response of catecholamine biosynthetic enzyme genes and cardiovascular system in ovariectomized female rats.

机译:雌激素可改变卵巢切除雌性大鼠儿茶酚胺生物合成酶基因和心血管系统的应激反应。

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摘要

Estrogen is likely involved in the gender specific differences in coping with stress. Activation of catecholamine (CA) biosynthetic enzyme gene expression in central and peripheral CA systems plays a key role in response to stress and in regulation of the cardiovascular system. Here we examined whether estradiol can modulate response of hypothalamic-pituitary-adrenal axis (HPA), gene expression of enzymes related to CA biosynthesis in several noradrenergic locations, tetrahydrobiopterin (BH4) concentration and blood pressure (BP) in response to immobilization stress (IMO) of ovariectomized female rats. Rats were injected with 25 mug/kg estradiol benzoate (EB) or sesame oil once daily for 16 days and subsequently exposed to two hours of IMO. The IMO triggered elevation in plasma ACTH was lessened in EB-pretreated animals. However, estradiol did not alter the IMO-elicited rise of tyrosine hydroxylase mRNA levels in adrenal medulla (AM) and in the nucleus of solitary track (NTS) compared with controls. The response of GTP cyclohydrolase I (GTPCH) mRNA in AM to IMO was also similar in both groups. Several responses to IMO in EB-treated rats were reversed. Instead of IMO-elicited elevation in dopamine beta-hydroxylase mRNA levels in the locus coeruleus, GTPCH mRNA and BH4 levels in the NTS, they were reduced by IMO. In a parallel experiment, BP was monitored during restraint stress. The elevation of BP in response to single or repeated restraint stress was sustained during 2 h in controls and reduced after 70 min stress in EB treated rats. One month after withdrawal of EB treatment, the BP response to restraint was similar to that of rats which never received EB. The results demonstrate that estrogen can modulate responses to stress affecting HPA axis, CA biosynthesis, in central and peripheral noradrenergic systems, and BP.
机译:在应对压力时,雌激素可能参与了性别差异。中央和周边CA系统中的儿茶酚胺(CA)生物合成酶基因表达的激活在响应压力和调节心血管系统中起着关键作用。在这里,我们检查了雌二醇是否可以调节下丘脑-垂体-肾上腺轴(HPA)的响应,与去甲肾上腺素几个位置的CA生物合成相关的酶的基因表达,四氢生物蝶呤(BH4)的浓度和血压(BP)对固定压力的响应(IMO )切除卵巢的雌性大鼠。每天一次向大鼠注射25杯/千克的雌二醇苯甲酸酯(EB)或芝麻油,持续16天,然后暴露于两个小时的IMO。在EB预处理的动物中,IMO触发的血浆ACTH升高有所降低。但是,与对照组相比,雌二醇并没有改变IMO引起的肾上腺髓质(AM)和孤立轨迹核(NTS)中酪氨酸羟化酶mRNA水平的升高。两组中AM中GTP环水解酶I(GTPCH)mRNA对IMO的反应也相似。在EB治疗的大鼠中对IMO的几种反应被逆转。 IMO降低了IMO引起的蓝斑中多巴胺β-羟化酶mRNA水平,NTS中GTPCH mRNA和BH4水平的升高。在平行实验中,在约束压力期间监测BP。在对照组中,对单个或重复约束压力的血压升高在2小时内持续,在EB治疗的大鼠中,应激70分钟后血压升高。停用EB治疗一个月后,BP对束缚的反应与从未接受EB的大鼠相似。结果表明,雌激素可以调节对影响HPA轴,CA生物合成,中枢和外周去甲肾上腺素能系统以及BP的压力的反应。

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