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Alcohol Delays the Onset of Puberty in the Female Rat by Altering Key Hypothalamic Events

机译:通过改变关键的下丘脑事件,酒精延迟雌性大鼠的青春期发作

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Background Because alcohol (ALC) delays signs of pubertal development, we assessed the time course of events associated with the synthesis of critical hypothalamic peptides that regulate secretion of luteinizing hormone‐releasing hormone (LHRH), the peptide that drives the pubertal process. Methods Immature female rats were administered either laboratory chow or BioServe isocaloric control or ALC‐liquid diets from 27 through 33?days of age. On days 28, 29, 31, and 33, animals were killed by decapitation and tissue blocks containing the medial basal hypothalamus (MBH) and the rostral hypothalamic area (RHA) were isolated and stored frozen until assessed by Western blot analysis. Results Synthesis of dynorphin (DYN), a prepubertal inhibitor of LHRH secretion, was increased ( p ??0.05) in the MBH of ALC‐treated animals by day 29. DYN was further elevated ( p ??0.01) on day 33 and was associated with an increase ( p ??0.01) in DYN receptor expression. ALC did not affect synthesis of neurokinin B (NKB), a prepubertal stimulator of LHRH; however, it did suppress ( p ??0.05) NKB receptor expression in the MBH by day 31. The most potent stimulator of prepubertal LHRH secretion, kisspeptin (Kp), was also decreased ( p ??0.05) in the MBH as early as day 29, with continued suppression ( p ??0.01) through day 33. Similar timely suppressions of mammalian target of rapamycin (mTOR), an immediate upstream regulator of Kp, were also noted. These decreases in mTOR and Kp were consistent with ALC stimulating ( p ??0.05) the p‐AMP‐activated protein kinase/Raptor inhibitory pathway to mTOR on day 29, then later suppressing ( p ??0.001) an Akt‐mediated induction pathway to mTOR by day 31. In the RHA, ALC affected the pathways regulating Kp in a manner similar to that described in the MBH; however, these effects were not noted until day 33. Conclusions ALC acts within the MBH as early as 29?days to induce inhibitor and repressor inputs to LHRH, while depressing stimulatory inputs to the peptide. Collectively, these events lead to delayed signs of pubertal development.
机译:背景是因为酒精(ALC)延迟呕吐发育的迹象,我们评估了与合成关键下丘脑肽相关的事件的时间,调节培氏素释放激素(LHRH)的分泌,该肽驱动青春期过程的肽。方法将未成熟的雌性大鼠施用实验室食物或生物动物异常对照或ALC-液体饮食,从27-33〜年龄。在第28,29,31和33天中,通过脱涂和含有内侧基底下丘脑(MBH)的组织嵌段的组织嵌段杀死动物,并将泌喷虫下丘脑区域(RHA)进行冷冻,直至通过Western印迹分析评估。结果在第29天的MBH中,将达啡卟啉(DYN)的合成,LHRH分泌的预先抑制剂抑制剂(p≤x≤0.05)增加(p≤x≤0.05)。DYN进一步升高(p≤0.01)第33天,并且在Dyn受体表达中增加(p≤≤0.01)。 ALC不影响Neurokinin B(NKB)的合成,LHRH的预先刺激剂;然而,它确实抑制了在第31天的MBH中的(p≤0.05)NKB受体表达。预先用过的PHERUBERTAL SECRICIZION,Kisspeptin(KP)中最有效的刺激器也在下降(p≤≤0.05) MBH早在第29天,还注意到通过第33天继续抑制(p?&Δ01)。还注意到雷帕霉素(mTOR)的哺乳动物靶标,KP立即上游调节剂的类似及时抑制。 MTOR和KP中的这些降低与ALC刺激(P 1 0.05)在第29天的MTOR上对MTOR的p-AMP活化蛋白激酶/猛禽抑制途径一致,然后抑制(p≤≤0.001)akt在第31天介断对MTOR的诱导途径。在RHA中,ALC以与MBH中所述的方式影响kp的途径;然而,在第33天之前没有注意到这些效果。结论ALC早在MBH的情况下起到29℃,以诱导抑制剂和阻遏物输入到LHRH的天数,同时抑制肽的刺激投入。集体,这些事件导致青春期发展的延迟迹象。

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