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犬垂体腺和垂体腺瘤中的干细胞。

Stem cells in the canine pituitary gland and in pituitary adenomas.

机构信息

a Department of Clinical Sciences of Companion Animals, Faculty of Veterinary Medicine , Utrecht University , PO Box 80154, 3508 TD , Utrecht , the Netherlands.

出版信息

Vet Q. 2013 Dec;33(4):217-24. doi: 10.1080/01652176.2013.873961. Epub 2014 Jan 14.

Abstract

Cushing's disease (CD) or pituitary-dependent hypercortisolism is a common endocrinopathy in dogs, with an estimated prevalence of 1 or 2 in 1000 dogs per year. It is caused by an adrenocorticotropic hormone secreting adenoma in the pars distalis or pars intermedia of the pituitary gland. The pituitary gland is a small endocrine gland located in the pituitary fossa. In the postnatal individual, the hypothalamus-pituitary axis plays a central role in maintaining homeostatic functions, like control of metabolism, reproduction, and growth. Stem cells are suggested to play a role in the homeostatic adaptations of the adult pituitary gland, such as the rapid specific cell-type expansion in response to pregnancy or lactation. Several cell populations have been suggested as pituitary stem cells, such as Side Population cells and cells expressing Sox2 or Nestin. These cell populations are discussed in this review. Also, stem and progenitor cells are thought to play a role in pituitary tumorigenesis, such as the development of pituitary adenomas in dogs. There are limited reports on the role of stem cells in pituitary adenomas, especially in dogs. Further studies are needed to identify and characterize this cell population and to develop specific cell targeting therapeutic strategies as a new way of treating canine CD.

摘要

库欣病(CD)或垂体依赖性皮质醇增多症是犬常见的内分泌疾病,估计每年每 1000 只犬中有 1 或 2 只为该病。它是由垂体腺远侧部或中间部的促肾上腺皮质激素分泌腺瘤引起的。垂体是位于垂体窝中的小型内分泌腺。在出生后个体中,下丘脑-垂体轴在维持代谢、生殖和生长等稳态功能方面发挥着核心作用。干细胞被认为在成年垂体的稳态适应中发挥作用,例如在怀孕或哺乳时快速特异性细胞类型的扩张。已经提出了几种作为垂体干细胞的细胞群体,例如侧群细胞和表达 Sox2 或巢蛋白的细胞。在这篇综述中讨论了这些细胞群体。此外,干细胞和祖细胞被认为在垂体肿瘤发生中发挥作用,例如犬的垂体腺瘤的发展。关于干细胞在垂体腺瘤中的作用,特别是在犬中的作用,报道有限。需要进一步的研究来鉴定和表征这种细胞群体,并开发针对特定细胞的治疗策略,作为治疗犬 CD 的新方法。

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