Reymond M J, Benotto W, Lemarchand-Béraud T
Neuroendocrinology. 1987 Jun;46(1):62-8. doi: 10.1159/000124797.
An influence of thyroid status on the secretory activity of hypothalamic dopaminergic neurons was observed in adult rats and its involvement in the regulation of prolactin (PRL) secretion was examined. The secretory activity of the tuberoinfundibular dopaminergic (TIDA) neurons was evaluated by measurement of dopamine (DA) biosynthesis in the neurons and DA release into hypophysial portal blood. The accumulation of DA and PRL in the adenohypophysis as well as PRL concentration in plasma were also estimated, and the various parameters were studied in thyroidectomized (TX), sham TX, TX rats treated for 7 days with thyroxine (T4; 20 micrograms/kg body weight daily) as well as in intact rats treated similarly with T4. An enhanced secretory activity of the TIDA neurons was observed in TX compared to sham TX rats, as attested by an increased synthesis of DA in the neurons, a greater concentration of DA in hypophysial portal plasma as well as an augmented accumulation of DA in the adenohypophysis. In the same animals, PRL was reduced in the adenohypophysis and in plasma, reflecting a blunted secretion of PRL in severe hypothyroidism. Treatment of TX rats with T4 for 7 days abolished all effects observed in TX rats, DA synthesis in TIDA neurons of TX rats treated with T4 being even less than in neurons of sham TX animals. A similar treatment with T4 administered to intact rats did not affect the secretory activity of the TIDA neurons nor the secretion of PRL.(ABSTRACT TRUNCATED AT 250 WORDS)
在成年大鼠中观察到甲状腺状态对下丘脑多巴胺能神经元分泌活动的影响,并研究了其在催乳素(PRL)分泌调节中的作用。通过测量神经元中多巴胺(DA)的生物合成以及DA释放到垂体门脉血中的情况,评估了结节漏斗多巴胺能(TIDA)神经元的分泌活动。还估计了腺垂体中DA和PRL的积累以及血浆中PRL的浓度,并在甲状腺切除(TX)大鼠、假手术TX大鼠、用甲状腺素(T4;每日20微克/千克体重)治疗7天的TX大鼠以及同样用T4治疗的完整大鼠中研究了各种参数。与假手术TX大鼠相比,TX大鼠中观察到TIDA神经元的分泌活动增强,这通过神经元中DA合成增加、垂体门脉血浆中DA浓度更高以及腺垂体中DA积累增加得到证实。在相同动物中,腺垂体和血浆中的PRL降低,反映出严重甲状腺功能减退时PRL分泌减弱。用T4治疗TX大鼠7天消除了TX大鼠中观察到的所有影响,用T4治疗的TX大鼠TIDA神经元中的DA合成甚至低于假手术TX动物的神经元。对完整大鼠进行类似的T4治疗不影响TIDA神经元的分泌活动,也不影响PRL的分泌。(摘要截断于250字)