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下丘脑去传入对大鼠静息状态下促甲状腺激素分泌的影响。

Effect of hypothalamic deafferentation on the secretion of thyrotropin in resting conditions in the rat.

作者信息

Hefco E, Krulich L, Aschenbrenner J E

出版信息

Endocrinology. 1975 Nov;97(5):1226-33. doi: 10.1210/endo-97-5-1226.

Abstract

Complete hypothalamic deafferentation in normal male rats, either limited to the median eminence, arcuate nucleus, and basal parts of ventromedial nuclei, or including, in addition, the ventromedial nuclei, dorsomedial hypothalamus, and a large part of the posterior hypothalamus, caused a decrease of resting serum TSH levels and a marked lowering of the pituitary TSH concentration. Partial frontal anterior cuts caused similar changes, whereas partial posterolateral cuts, or a complete deafferentation extended rostrally to include suprachiasmatic nuclei and caudal parts of the anterior hypothalamus, were without effect. Serum thyroxine (T4) and triiodothyronine levels in animals with the effective types of deafferentations were, after an initial short-lived decrease, within normal range despite persistent low TSH levels. Destruction of the median eminence-arcuate nucleus by electrolytic lesions in either normal or deafferented animals lowered serum TSH more than deafferentations alone, and caused a lasting decrease of serum T4 levels. We have concluded that the low serum TSH levels of the deafferented animals are caused by a partial impairment of TRF release from the median eminence-arcuate nucleus complex. This impairment seems, in turn, to be caused by the severance of the connection of the basal mid-hypothalamic structures with the more rostal parts of the hypothalamus. Our results also indicate that normal circulating levels of thyroid hormones can be maintained even at reduced serum TSH levels.

摘要

对正常雄性大鼠进行完全下丘脑去传入神经支配,要么仅限于正中隆起、弓状核和腹内侧核的基部,要么除此之外还包括腹内侧核、下丘脑背内侧核和下丘脑后部的大部分,会导致静息血清促甲状腺激素(TSH)水平降低以及垂体TSH浓度显著下降。部分额叶前部切断会引起类似变化,而部分后外侧切断,或者完全去传入神经支配向前延伸至包括视交叉上核和下丘脑前部的尾部,则没有效果。进行有效去传入神经支配类型的动物,其血清甲状腺素(T4)和三碘甲状腺原氨酸水平在最初短暂下降后,尽管TSH水平持续较低,但仍在正常范围内。在正常或去传入神经支配的动物中,通过电解损伤破坏正中隆起 - 弓状核,比单独去传入神经支配更能降低血清TSH,并导致血清T4水平持续下降。我们得出结论,去传入神经支配动物的低血清TSH水平是由正中隆起 - 弓状核复合体释放促甲状腺激素释放因子(TRF)的部分受损引起的。反过来,这种损伤似乎是由下丘脑基部中部结构与下丘脑更靠前部分的连接切断所致。我们的结果还表明,即使血清TSH水平降低,甲状腺激素的正常循环水平仍可维持。

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