Liu S R, Tsai S C, Lu C C, Lee K Y, Liu T C, Pu H F, Wang P S
Department of Physiology, National Yang-Ming University, Taipei, Taiwan, ROC.
Chin J Physiol. 1997 Dec 31;40(4):221-6.
In vivo and in vitro experiments were designed to examine [1] the effect of triiodothyronine (T3) and/or ovarian steroids on the spontaneous and thyrotropin-releasing hormone (TRH)-stimulated release of thyrotropin (TSH) by the anterior pituitary gland (AP) in vitro; and [2] the in vivo effects of T3 and ovarian steroids on TRH-release in vitro. In the experiment 1, ovariectomized-thyroidectomized (Ovx-Tx) rats were injected with triiodothyronine (T3, 2 micrograms/kg), estradiol benzoate (EB, 25 micrograms/kg), progesterone (P, 10 mg/kg), T3 plus EB, T3 plus P, EB plus P, or T3 plus EB and P for 6 days before decapitation. The AP was incubated with Locke's medium, challenged with TRH (30 nM), recovered and then with T3 (10 nM) only or with T3+TRH, 30 min for each interval. Mediobasal hypothalami (MBHs) were challenged with high potassium (60 mM) for 30 min. In the experiment 2, the APs of Ovx-Tx rats were enzymatically dispersed and the AP cells were pretreated with or without EB (0-6 nM) for 72 h, and further with T3 (10 nM) for 24 h, followed by an incubation for 30 min with TRH (0-100 nM). The spontaneous and TRH-induced release of TSH in vitro from rat APs, and pituitary TSH content were increased by T3, or T3 plus P as compared with the animals injected with vehicle, or P alone. EB inhibits the effect of T3 on TSH release in vitro. Application of T3 in vitro prevented the release of TSH in response to TRH. EB dose-dependently relieved the inhibitory effect of T3 on TRH-induced TSH release in vitro. TRH release from MBH was increased by EB and inhibited by T3 or P. EB prevented the inhibitory effect of T3 on TRH release. P plus T3 potentiated the stimulatory effects of EB on TRH release. These results suggest that [1] the reduction of the concentration of plasma TSH by T3 is at least in part due to the inhibitory effects of T3 on TRH release from mediobasal hypothalamus, and TSH release in response to TRH, [2] the increased content and release of TSH from rat AP tissue by T3 via an in vivo effect may be involved in a short feedback loop of TSH on TRH release, and [3] ovarian steroid hormones play an inhibitory role in regulating T3 effects on the release of TSH and TRH.
[1] 三碘甲状腺原氨酸(T3)和/或卵巢类固醇对体外垂体前叶(AP)自发释放促甲状腺激素(TSH)以及促甲状腺激素释放激素(TRH)刺激释放TSH的影响;[2] T3和卵巢类固醇对体外TRH释放的体内影响。在实验1中,对去卵巢-甲状腺切除(Ovx-Tx)大鼠在断头前6天注射三碘甲状腺原氨酸(T3,2微克/千克)、苯甲酸雌二醇(EB,25微克/千克)、孕酮(P,10毫克/千克)、T3加EB、T3加P、EB加P或T3加EB和P。将AP与洛克氏培养基一起孵育,用TRH(30纳摩尔)刺激,然后回收,之后分别单独用T3(10纳摩尔)或T3+TRH处理,每个时间段处理30分钟。用高钾(60毫摩尔)刺激中基底部下丘脑(MBH)30分钟。在实验2中,将Ovx-Tx大鼠的AP进行酶分散处理,AP细胞用或不用EB(0 - 6纳摩尔)预处理72小时,再用T3(10纳摩尔)处理24小时,随后用TRH(0 - 100纳摩尔)孵育30分钟。与注射赋形剂或单独注射P的动物相比,T3或T3加P可使大鼠AP体外自发释放和TRH诱导释放的TSH以及垂体TSH含量增加。EB抑制T3对体外TSH释放的影响。体外应用T3可阻止TSH对TRH的反应性释放。EB剂量依赖性地减轻T3对体外TRH诱导的TSH释放的抑制作用。EB可增加MBH释放TRH,而T3或P则抑制其释放。EB可阻止T3对TRH释放的抑制作用。P加T3可增强EB对TRH释放的刺激作用。这些结果表明:[1] T3降低血浆TSH浓度至少部分是由于T3对中基底部下丘脑释放TRH以及TSH对TRH反应性释放的抑制作用;[2] T3通过体内效应使大鼠AP组织中TSH含量和释放增加可能参与了TSH对TRH释放的短反馈环;[3] 卵巢类固醇激素在调节T3对TSH和TRH释放的作用中起抑制作用。