Sagawa Norimasa, Yura Shigeo, Itoh Hiroaki, Kakui Kazuyo, Takemura Maki, Nuamah Mercy A, Ogawa Yoshihiro, Masuzaki Hiroaki, Nakao Kazuwa, Fujii Shingo
Department of Gynecology and Obstetrics, Kyoto University Graduate School of Medicine, Kyoto, Japan.
Endocrine. 2002 Oct;19(1):65-71. doi: 10.1385/ENDO:19:1:65.
Leptin was initially identified as an adipocyte-derived hormone that decreases food intake and body weight via its receptor in the hypothalamus. Subsequent animal studies revealed various physiologic functions of leptin. Leptin plays an essential role in reproduction by regulating gonadotropin-releasing hormone secretion from the hypothalamus. It also modulates glucose metabolism by increasing insulin sensitivity and activates the sympathetic nervous system. In humans, leptin is also produced by placental trophoblasts and is secreted into both the maternal and fetal circulation. Leptin production in the placenta is increased in pregnancies complicated with several pathologic conditions. Leptin gene expression in the placenta is augmented in severe preeclampsia, and maternal plasma leptin levels in severe preeclampsia are significantly higher than those in normotensive pregnant women. Leptin production in the placenta is also increased in diabetic pregnancy with insulin treatment. Furthermore, leptin is proposed to play a functional role in implantation by virtue of its stimulatory effect on matrix metalloproteinase expression in cytotrophoblast. Dysregulation of leptin metabolism and/or function in the placenta may be implicated in the pathogenesis of various disorders during pregnancy, such as recurrent miscarriage, gestational diabetes, intrauterine growth retardation, and preeclampsia. In this review, possible roles of placental leptin are discussed.
瘦素最初被鉴定为一种由脂肪细胞分泌的激素,它通过下丘脑的受体来减少食物摄入量和体重。随后的动物研究揭示了瘦素的各种生理功能。瘦素通过调节下丘脑促性腺激素释放激素的分泌,在生殖过程中发挥着重要作用。它还通过提高胰岛素敏感性来调节葡萄糖代谢,并激活交感神经系统。在人类中,胎盘滋养层细胞也会产生瘦素,并分泌到母体和胎儿的循环系统中。在伴有多种病理状况的妊娠中,胎盘瘦素的产生会增加。在重度子痫前期,胎盘中瘦素基因的表达会增强,且重度子痫前期孕妇的母体血浆瘦素水平显著高于血压正常的孕妇。在接受胰岛素治疗的糖尿病妊娠中,胎盘瘦素的产生也会增加。此外,由于瘦素对细胞滋养层中基质金属蛋白酶表达具有刺激作用,因此有人提出瘦素在着床过程中发挥功能性作用。胎盘瘦素代谢和/或功能的失调可能与妊娠期间各种疾病的发病机制有关,如复发性流产、妊娠期糖尿病、胎儿生长受限和子痫前期。在这篇综述中,将讨论胎盘瘦素可能发挥的作用。