Ernst Sara, Demirci Cem, Valle Shelley, Velazquez-Garcia Silvia, Garcia-Ocaña Adolfo
Department of Medicine, Division of Endocrinology & Metabolism, University of Pittsburgh, 200 Lothrop St. BST-E1140, Pittsburgh, PA 15261, USA.
Diabetes Manag (Lond). 2011 Mar 1;1(2):239-248. doi: 10.2217/dmt.10.24.
Pancreatic β-cell mass adapts to changing insulin demands in the body. One of the most amazing reversible β-cell adaptations occurs during pregnancy and postpartum conditions. During pregnancy, the increase in maternal insulin resistance is compensated by maternal β-cell hyperplasia and hyperfunctionality to maintain normal blood glucose. Although the cellular mechanisms involved in maternal β-cell expansion have been studied in detail in rodents, human studies are very sparse. A summary of these studies in rodents and humans is described below. Since β-cell mass expands during pregnancy, unraveling the endocrine/paracrine/autocrine molecular mechanisms responsible for these effects can be of great importance for predicting and treating gestational diabetes and for finding new cues that induce β-cell regeneration in diabetes. In addition to the well known implication of lactogens during maternal β-cell expansion, additional participants are being discovered such as serotonin and HGF. Transcription factors, such as hepatocyte nuclear factor-4α and the forkhead box protein-M1, and cell cycle regulators, such as menin, p27 and p18, are important intracellular signals responsible for these effects. In this article, we summarize and discuss novel studies uncovering molecular mechanisms involved in the maternal β-cell adaptive expansion during pregnancy.
胰腺β细胞量会适应体内不断变化的胰岛素需求。最令人惊奇的可逆性β细胞适应性变化之一发生在孕期和产后阶段。在孕期,母体胰岛素抵抗的增加通过母体β细胞增生和功能亢进得到补偿,以维持正常血糖水平。尽管在啮齿动物中已对母体β细胞扩张所涉及的细胞机制进行了详细研究,但人体研究却非常稀少。以下是对这些在啮齿动物和人体中的研究的总结。由于β细胞量在孕期会增加,阐明负责这些效应的内分泌/旁分泌/自分泌分子机制对于预测和治疗妊娠期糖尿病以及寻找诱导糖尿病中β细胞再生的新线索可能非常重要。除了催乳素在母体β细胞扩张过程中众所周知的作用外,还发现了其他参与因素,如血清素和肝细胞生长因子。转录因子,如肝细胞核因子-4α和叉头框蛋白-M1,以及细胞周期调节因子,如Menin、p27和p18,是负责这些效应的重要细胞内信号。在本文中,我们总结并讨论了揭示孕期母体β细胞适应性扩张所涉及分子机制的新研究。