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首页> 外文期刊>Life sciences >DIFFERENT REGULATION OF THYROTROPIN RELEASING HORMONE CONTENT AND RELEASE IN PARAVENTRICULAR NUCLEUS (PVN) AND MEDIAN EMINENCE (ME) OF RAT HYPOTHALAMUS DURING IN VITRO INCUBATION
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DIFFERENT REGULATION OF THYROTROPIN RELEASING HORMONE CONTENT AND RELEASE IN PARAVENTRICULAR NUCLEUS (PVN) AND MEDIAN EMINENCE (ME) OF RAT HYPOTHALAMUS DURING IN VITRO INCUBATION

机译:体外培养大鼠下丘脑核素(PVN)释放甲状腺素和释放大鼠下丘脑中位隆起(ME)的甲状腺调节激素含量不同

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摘要

TRH is present throughout the central nervous system possessing many different functions. Only TRH synthesized in the hypothalamic PVN and transported to the ME regulates anterior pituitary secretion of thyrotropin. To investigate this hypophysiotropic system, we have developed a method using dissected rat PVN and ME, representing mostly cell bodies and nerve terminals respectively, of the same TRH system. Tissues were incubated for four 30 min periods each in Locke's medium with alternatively normal and high KCl concentration. Repeated KCl-induced membrane depolarization resulted in significantly increased TRH release from both tissues (15% of TRH content) which was dependent on Ca2+ influx. Some important differences were found in the regulation of TRH in the PVN and ME: Comparison of TRH content in the tissue before and after incubation with the amount of secreted TRH showed new production of TRH during incubation in the ME, but not in the PVN. Frequent medium replacement during depolarization revealed that TRH secretion at the level of the ME, but not the PVN, is probably inhibited by some substance released during incubation. These data suggest the there is a different regulation of TRH in the PVN and ME and that TRH secreted by the isolated PVN may come mostly from the perikarya and represent paracrine neurohormone secretion. [References: 22]
机译:TRH存在于中枢神经系统中,具有许多不同的功能。仅在下丘脑PVN中合成并转运至ME的TRH调节促甲状腺激素的垂体前叶分泌。为了研究这种垂体功能低下的系统,我们开发了一种使用解剖的大鼠PVN和ME的方法,分别代表同一TRH系统的大部分细胞体和神经末梢。将组织在洛克氏培养基中分别以正常和高KCl浓度孵育四个30分钟。反复的KCl诱导的膜去极化导致TRH从两个组织中的释放显着增加(TRH含量的15%),这取决于Ca2 +的流入。在PVN和ME中TRH的调节中发现了一些重要的区别:孵育前后组织中TRH含量与分泌的TRH量的比较显示了在ME中孵育期间TRH的新产生,但在PVN中没有。在去极化过程中频繁更换培养基表明,在培养过程中释放的某些物质可能抑制了ME水平而不是PVN上的TRH分泌。这些数据表明,在PVN和ME中存在TRH的不同调节,并且由分离的PVN分泌的TRH可能主要来自周皮,代表旁分泌神经激素的分泌。 [参考:22]

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