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松果体对雌性大鼠催乳素具有抑制作用的证据。

Evidence for an inhibitory influence of the pineal on prolactin in the female rat.

作者信息

Leadem C A, Blask D E

出版信息

Neuroendocrinology. 1981 Nov;33(5):268-75. doi: 10.1159/000123244.

Abstract

The effect of the pineal gland on prolactin (PRL) synthesis, storage and release was tested in female rats. To do this, we incubated in vitro hemi-anterior pituitaries from 80-day-old female rats that had been rendered, 8 weeks previously, either blind-anosmic, blind-anosmic and pinealectomized or left intact. Reproductive organ weights, pituitary weights and pituitary DNA content were decreased in animals rendered both blind and anosmic. These effects were reversed by removal of the pineal gland. Additionally, the serum levels of PRL were diminished in blind-anosmic rats from that of intact controls. The synthesis of PRL in vitro was dramatically reduced in the pituitaries of blind-anosmic rats as evidenced by a 63% decrease in [3H]leucine incorporation into PRL from that observed in the intact group. Likewise, the total amount (medium + pituitaries) of radioimmunoassayable PRL in vitro was depressed by 26% in the blind-anosmic group as compared with intact controls. Pinealectomy reversed the reductions in de novo synthesized and total immunoreactive PRL in vitro. From these studies we conclude that in the blind-anosmic female rat the pineal chronically inhibits PRL synthesis and storage in the pituitary and, possibly, its release into the blood. These pineal-induced effects could be accounted for by a reduction in the pituitary mammotroph as might be indicated by the decrease in pituitary DNA content observed in dual-sensory deprived rats.

摘要

在雌性大鼠中测试了松果体对催乳素(PRL)合成、储存和释放的影响。为此,我们对80日龄雌性大鼠的半前脑垂体进行了体外培养,这些大鼠在8周前已被制成失明-嗅觉缺失、失明-嗅觉缺失并松果体切除或保持完整的状态。失明且嗅觉缺失的动物生殖器官重量、垂体重量和垂体DNA含量均降低。松果体切除可逆转这些影响。此外,失明-嗅觉缺失大鼠的血清PRL水平低于完整对照组。失明-嗅觉缺失大鼠垂体中PRL的体外合成显著减少,[3H]亮氨酸掺入PRL的量比完整组减少63%即可证明。同样,与完整对照组相比,失明-嗅觉缺失组体外可通过放射免疫测定的PRL总量(培养基+垂体)降低了26%。松果体切除可逆转体外新合成的和总的免疫反应性PRL的减少。从这些研究中我们得出结论,在失明-嗅觉缺失的雌性大鼠中,松果体长期抑制垂体中PRL的合成和储存,并可能抑制其释放到血液中。这些松果体诱导的效应可能是由于垂体催乳素细胞减少所致,双感觉剥夺大鼠垂体DNA含量的降低可能表明了这一点。

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