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垂体干细胞调控:幕后操纵者是谁?

Pituitary stem cell regulation: who is pulling the strings?

作者信息

Cox Benoit, Roose Heleen, Vennekens Annelies, Vankelecom Hugo

机构信息

Department of Development and RegenerationCluster of Stem Cell and Developmental Biology, Unit of Stem Cell Research, University of Leuven (KU Leuven), Leuven, Belgium.

Department of Development and RegenerationCluster of Stem Cell and Developmental Biology, Unit of Stem Cell Research, University of Leuven (KU Leuven), Leuven, Belgium

出版信息

J Endocrinol. 2017 Sep;234(3):R135-R158. doi: 10.1530/JOE-17-0083. Epub 2017 Jun 14.

Abstract

The pituitary gland plays a pivotal role in the endocrine system, steering fundamental processes of growth, metabolism, reproduction and coping with stress. The adult pituitary contains resident stem cells, which are highly quiescent in homeostatic conditions. However, the cells show marked signs of activation during processes of increased cell remodeling in the gland, including maturation at neonatal age, adaptation to physiological demands, regeneration upon injury and growth of local tumors. Although functions of pituitary stem cells are slowly but gradually uncovered, their regulation largely remains virgin territory. Since postnatal stem cells in general reiterate embryonic developmental pathways, attention is first being given to regulatory networks involved in pituitary embryogenesis. Here, we give an overview of the current knowledge on the NOTCH, WNT, epithelial-mesenchymal transition, SHH and Hippo pathways in the pituitary stem/progenitor cell compartment during various (activation) conditions from embryonic over neonatal to adult age. Most information comes from expression analyses of molecular components belonging to these networks, whereas functional extrapolation is still very limited. From this overview, it emerges that the 'big five' embryonic pathways are indeed reiterated in the stem cells of the 'lazy' homeostatic postnatal pituitary, further magnified to activation in more energetic, physiological and pathological remodeling conditions. Increasing the knowledge on the molecular players that pull the regulatory strings of the pituitary stem cells will not only provide further fundamental insight in postnatal pituitary homeostasis and activation, but also clues toward the development of regenerative ideas for improving treatment of pituitary deficiency and tumors.

摘要

垂体在内分泌系统中起着关键作用,掌控着生长、代谢、生殖以及应对压力等基本过程。成年垂体含有驻留干细胞,这些干细胞在稳态条件下高度静止。然而,在垂体细胞重塑增加的过程中,包括新生儿期成熟、适应生理需求、损伤后再生以及局部肿瘤生长,这些细胞会表现出明显的激活迹象。尽管垂体干细胞的功能正缓慢但逐步地被揭示,但其调控在很大程度上仍是未知领域。由于一般来说出生后的干细胞会重现胚胎发育途径,因此首先关注的是参与垂体胚胎发生的调控网络。在此,我们概述了在从胚胎期到新生儿期再到成年期的各种(激活)条件下,垂体干/祖细胞区室中NOTCH、WNT、上皮-间质转化、SHH和Hippo信号通路的现有知识。大多数信息来自对属于这些网络的分子成分的表达分析,而功能推断仍然非常有限。从这个概述中可以看出,“五大”胚胎信号通路确实在出生后处于静止状态的垂体干细胞中重现,并且在更活跃、生理和病理重塑条件下被进一步放大激活。增加对调控垂体干细胞的分子机制的了解,不仅将为出生后垂体稳态和激活提供进一步的基础认识,还将为改善垂体功能减退和肿瘤治疗的再生理念的发展提供线索。

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