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首页> 外文期刊>Journal of neuroendocrinology >Insulin-induced hypoglycaemia suppresses pulsatile luteinising hormone secretion and arcuate Kiss1 cell activation in female mice
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Insulin-induced hypoglycaemia suppresses pulsatile luteinising hormone secretion and arcuate Kiss1 cell activation in female mice

机译:胰岛素诱导的低血糖血症抑制脉冲旋光激素分泌和雌性小鼠的弓形吻1细胞活化

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Stress suppresses pulsatile luteinising hormone (LH) secretion in a variety of species, although the mechanism underlying this inhibition of reproductive function remains unclear. Metabolic stress, particularly hypoglycaemia, is a clinically-relevant stress type that is modelled with bolus insulin injection (insulin-induced hypoglycaemia). The present study utilised ovariectomised C57BL/6 mice to test the hypothesis that acute hypoglycaemia suppresses pulsatile LH secretion via central mechanisms. Pulsatile LH secretion was measured in 90-minute sampling periods immediately prior to and following i.p. injection of saline or insulin. The secretion of LH was not altered over time in fed animals or acutely fasted (5 hours) animals following an i.p. saline injection. By contrast, insulin elicited a robust suppression of pulsatile LH secretion in fasted animals, preventing LH pulses in five of six mice. To identify the neuroendocrine site of impairment, a kisspeptin challenge was performed in saline or insulin pre-treated animals in a cross-over design. LH secretion in response to exogenous kisspeptin was not different between animals pre-treated with saline or insulin, indicating normal gonadotrophin-releasing hormone cell and pituitary responses during acute hypoglycaemia. Based on this finding, the effect of insulin-induced hypoglycaemia on arcuate kisspeptin (Kiss1) cell function was determined using c-Fos as a marker of neuronal activation. Insulin caused a significant suppression in the percentage of Kiss1 cells in the arcuate nucleus that contained c-Fos compared to saline-injected controls. Taken together, these data support the hypothesis that insulin-induced hypoglycaemia suppresses pulsatile LH secretion in the female mouse via predominantly central mechanisms, which culminates in the suppression of the arcuate Kiss1 population.
机译:应力抑制各种物种中的脉腭旋光激素(LH)分泌,尽管这种抑制生殖功能的机制仍然不清楚。代谢应激,特别是低血糖,是一种临床相关的应力类型,其用推注胰岛素注射(胰岛素诱导的低血糖)建模。本研究利用卵巢切除的C57BL / 6小鼠来测试急性低血糖血症通过中央机制抑制脉动LH分泌的假设。在90分钟的采样期之前和之后,在I.P的情况下,在90分钟的取样周期中测量脉动LH分泌。注射盐水或胰岛素。 LH的分泌不会随着时间的推移而改变喂养动物或急性禁食(5小时)动物后I.P。盐注射。相比之下,胰岛素引发了在禁食动物中脉动LH分泌的鲁棒抑制,防止了六只小鼠中的五个小鼠的LH脉冲。为了鉴定损伤的神经内分泌遗址,在交叉设计中,在盐水或胰岛素预处理的动物中进行吻蛋白攻击。 LH分泌响应外源性吻蛋白在用盐水或胰岛素预处理的动物之间没有不同,表明急性低血糖期间的正常促性腺激素释放激素细胞和垂体反应。基于该发现,使用C-FOS作为神经元激活的标志物测定胰岛素诱导的低血糖对弧形吻蛋白(KISS1)细胞功能的影响。胰岛素导致赋予C-FOS中的KISS1细胞的百分比的显着抑制,与盐水注入的对照相比。总之,这些数据支持假设胰岛素诱导的低血糖抑制雌性小鼠中的脉动LH分泌,通过主要的中央机制,其抑制了弧形Kiss1群体。

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