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新生期瘦素激增的阻断影响青春期前后雄性和雌性大鼠中参与代谢和生殖控制的生长因子、神经胶质蛋白和神经肽的基因表达。

Blockage of the Neonatal Leptin Surge Affects the Gene Expression of Growth Factors, Glial Proteins, and Neuropeptides Involved in the Control of Metabolism and Reproduction in Peripubertal Male and Female Rats.

作者信息

Mela Virginia, Díaz Francisca, Lopez-Rodriguez Ana Belen, Vázquez María Jesús, Gertler Arieh, Argente Jesús, Tena-Sempere Manuel, Viveros María-Paz, Chowen Julie A

机构信息

Department of Physiology (Animal Physiology II) (V.M., A.B.L.-R., M.-P.V.), Faculty of Biology, Universidad Complutense, 28040 Madrid, Spain; Department of Endocrinology (F.D., J.A., J.A.C.), Hospital Infantil Universitario Niño Jesús, Department of Pediatrics, Universidad Autónoma de Madrid, Instituto de Investigación Sanitaria Princesa, 28009 Madrid, Spain; Centro de Investigación Biomédica en Red (CIBER) Fisiopatología de Obesidad y Nutrición (F.D., M.J.V., J.A., M.T.-S., J.A.C.), Instituto Carlos III, 28903 Madrid, Spain; Department of Cell Biology, Physiology, and Immunology (M.J.V., M.T.-S.), University of Córdoba and Instituto Maimónides de Investigación Biomédica, Hospital Universitario Reina Sofia, 14004 Córdoba, Spain; and The Robert H. Smith Faculty of Agriculture, Food and Environment (A.G.), The Hebrew University of Jerusalem, Rehovot, Israel 76100.

出版信息

Endocrinology. 2015 Jul;156(7):2571-81. doi: 10.1210/en.2014-1981. Epub 2015 Apr 9.

Abstract

Leptin (Lep) is important in the development of neuroendocrine circuits involved in metabolic control. Because both Lep and metabolism influence pubertal development, we hypothesized that early changes in Lep signaling could also modulate hypothalamic (HT) systems involved in reproduction. We previously demonstrated that a single injection of a Lep antagonist (Antag) on postnatal day (PND)9, coincident with the neonatal Lep peak, induced sexually dimorphic modifications in trophic factors and markers of cell turnover and neuronal maturation in the HT on PND13. Here, our aim was to investigate whether the alterations induced by Lep antagonism persist into puberty. Accordingly, male and female rats were treated with a pegylated super Lep Antag from PND5 to PND9 and killed just before the normal appearance of external signs of puberty (PND33 in females and PND43 in males). There was no effect on body weight, but in males food intake increased, subcutaneous adipose tissue decreased and HT neuropeptide Y and Agouti-related peptide mRNA levels were reduced, with no effect in females. In both sexes, the Antag increased HT mRNA levels of the kisspeptin receptor, G protein-coupled recepter 54 (Gpr54). Expression of the Lep receptor, trophic factors, and glial markers were differently affected in the HT of peripubertal males and females. Lep production in adipose tissue was decreased in Antag-treated rats of both sexes, with production of other cytokines being differentially regulated between sexes. In conclusion, in addition to the long-term effects on metabolism, changes in neonatal Lep levels modifies factors involved in reproduction that could possibly affect sexual maturation.

摘要

瘦素(Lep)在参与代谢控制的神经内分泌回路发育中起着重要作用。由于瘦素和新陈代谢都会影响青春期发育,我们推测瘦素信号的早期变化也可能调节参与生殖的下丘脑(HT)系统。我们之前证明,在出生后第9天(PND9)单次注射瘦素拮抗剂(Antag),此时正值新生儿瘦素峰值,会在PND13时诱导下丘脑营养因子、细胞更新标志物和神经元成熟的性别差异修饰。在此,我们的目的是研究瘦素拮抗作用引起的改变是否会持续到青春期。因此,从PND5到PND9对雄性和雌性大鼠用聚乙二醇化超级瘦素拮抗剂进行处理,并在青春期外部体征正常出现之前(雌性为PND33,雄性为PND43)处死。对体重没有影响,但雄性大鼠的食物摄入量增加,皮下脂肪组织减少,下丘脑神经肽Y和刺鼠相关肽的mRNA水平降低,而雌性大鼠则无此影响。在两性中,拮抗剂均增加了亲吻素受体、G蛋白偶联受体54(Gpr54)的下丘脑mRNA水平。青春期前后雄性和雌性大鼠下丘脑的瘦素受体、营养因子和胶质细胞标志物的表达受到不同影响。拮抗剂处理的两性大鼠脂肪组织中的瘦素分泌均减少,其他细胞因子的分泌在两性之间受到不同调节。总之,除了对新陈代谢的长期影响外,新生儿瘦素水平的变化还会改变参与生殖的因子,这可能会影响性成熟。

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