肾上腺抑制促肾上腺皮质激素释放激素诱导的促甲状腺激素释放:在孕前和产后雏鸡的比较研究。

K L Geris, A Laheye, L R Berghman, E R Kühn, V M Darras
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引用次数: 0

摘要

最近的证据表明,促肾上腺皮质激素释放激素(CRH)在鸡中作为促甲状腺激素(TSH)释放的有效刺激物。本研究对肾上腺和甲状腺的反馈机制进行了研究。在绵羊CRH (oCRH)攻击前30分钟给予皮质酮可降低19日龄鸡胚胎(E19)中促甲状腺激素对oCRH的体内敏感性(20微克皮质酮;2微克oCRH),但8日龄鸡(C8)没有(40微克皮质酮;4微克铬)。在研究的两个年龄阶段,皮质酮(0.01和1微米)没有改变体外TSH对oCRH(100纳米)的反应,这表明在胚胎阶段有间接机制参与,而这种机制在草后鸡中不再存在。在体外实验中,3,5,3′-三碘甲状腺原氨酸(T3)预处理(0.01和1 μ m)对两组小鼠体外ocrh诱导的TSH释放均呈剂量依赖性下降。如前所述,皮质酮治疗引起胚胎鸡血浆T3升高,但在茅草后鸡中没有。因此,鸡胚胎中间接肾上腺反馈机制的存在可能与血浆T3的增加有关,这将改变促甲状腺激素对下丘脑释放因子的敏感性。综上所述,皮质酮不能直接调节促甲状腺激素对CRH的反应性,但其反馈机制可能依赖于仅存在于胚胎鸡的血浆T3的升高。在这方面,皮质酮可能通过协调鸡垂体水平的甲状腺反馈机制在胚胎发育过程中发挥重要作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Adrenal inhibition of corticotropin-releasing hormone-induced thyrotropin release: a comparative study in pre- and posthatch chicks.

Recent evidence indicates that corticotropin-releasing hormone (CRH) acts as a potent stimulator of thyrotropin (TSH) release in the chicken. In this study adrenal and thyroidal feedback mechanisms were studied. Administration of corticosterone 30 min prior to an ovine CRH (oCRH) challenge diminished the in vivo sensitivity of thyrotrophs to oCRH in 19-day-old chicken embryos (E19) (20 micrograms corticosterone; 2 micrograms oCRH) but not in 8-day-old chickens (C8) (40 micrograms corticosterone; 4 micrograms oCRH). At both ages studied, corticosterone (0.01 and 1 microM) did not alter the in vitro TSH response to oCRH (100 nM) indicating that an indirect mechanism is involved at the embryonic stage which is no longer present in posthatch chickens. In vitro, 3,5,3'-triiodothyronine (T3) pretreatment (0.01 and 1 microM) resulted at both ages studied in a dose-dependent drop in the in vitro oCRH-induced TSH release. As recorded previously, corticosterone treatment provoked a rise in plasma T3 in embryonic but not in posthatch chickens. The presence of an indirect adrenal feedback mechanism in chicken embryos may therefore be linked to the increase in plasma T3 which will alter the sensitivity of thyrotrophs to hypothalamic releasing factors. In conclusion, corticosterone does not directly modulate the responsiveness of thyrotrophs to CRH, but its feedback mechanism may be dependent on the evoked increase in plasma T3 which is only present in embryonic chickens. Corticosterone may in this regard play an essential role during embryonic development by coordinating thyroidal feedback mechanisms at the level of the chicken pituitary.

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