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寒冷暴露会减弱促分泌素对雄性大鼠血清催乳素和生长激素水平的影响。

Cold exposure attenuates effects of secretagogues on serum prolactin and growth hormone levels in male rats.

作者信息

Rauhala P, Idänpään-Heikkilä J J, Lang A, Tuominen R K, Männistö P T

机构信息

Department of Pharmacology and Toxicology, University of Helsinki, Finland.

出版信息

Am J Physiol. 1995 Apr;268(4 Pt 1):E758-65. doi: 10.1152/ajpendo.1995.268.4.E758.

Abstract

The stimulatory effect of morphine, dexmedetomidine (an alpha 2-adrenoceptor agonist), 1-(3-chlorophenyl)-piperazine (m-CPP, a 5-HT1B agonist), U-50488H (a kappa-opioid receptor agonist), pimozide (a dopamine antagonist), and restraint stress on prolactin and growth hormone (GH) secretion was compared during cold exposure (4 degrees C) and under basal conditions (30 degrees C) in male rats. Rectal temperature was also measured. The stimulatory effect of morphine, dexmedetomidine, m-CPP, and partially U-50488H on prolactin secretion was attenuated in rats kept at 4 degrees C. Cold exposure did not abolish prolactin release induced by pimozide and restraint stress. Cold exposure also antagonized the effect of morphine and dexmedetomidine on GH secretion. The stimulatory effect of morphine on prolactin and GH secretion was restored in the warm environment despite the sustained hypothermia. Cold exposure blocked the stimulatory effect of morphine on prolactin secretion in rats that were tolerant to the hypothermic effect of morphine. Thus hypothermia caused by morphine, dexmedetomidine, and m-CPP during cold exposure is not the sole factor in the antagonistic effect of cold. We suggest that cold exposure releases some compound(s) modulating hypothalamic neural pathways.

摘要

在雄性大鼠冷暴露(4℃)和基础条件(30℃)下,比较了吗啡、右美托咪定(一种α2肾上腺素能受体激动剂)、1-(3-氯苯基)-哌嗪(m-CPP,一种5-HT1B激动剂)、U-50488H(一种κ阿片受体激动剂)、匹莫齐特(一种多巴胺拮抗剂)和束缚应激对催乳素和生长激素(GH)分泌的刺激作用。还测量了直肠温度。在4℃饲养的大鼠中,吗啡、右美托咪定、m-CPP和部分U-50488H对催乳素分泌的刺激作用减弱。冷暴露并未消除匹莫齐特和束缚应激诱导的催乳素释放。冷暴露还拮抗了吗啡和右美托咪定对GH分泌的作用。尽管体温持续过低,但在温暖环境中,吗啡对催乳素和GH分泌的刺激作用得以恢复。冷暴露阻断了吗啡对吗啡低温效应耐受大鼠催乳素分泌的刺激作用。因此,冷暴露期间吗啡、右美托咪定和m-CPP引起的体温过低不是冷拮抗作用的唯一因素。我们认为冷暴露释放了一些调节下丘脑神经通路的化合物。

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