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Stem cells and the stem cell niche in the breast: an integrated hormonal and developmental perspective.

机译:乳房中的干细胞和干细胞生态位:激素和发育的综合观点。

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摘要

The mammary gland is a unique organ in that it undergoes most of its development after birth under the control of systemic hormones. Whereas in most other organs stem cells divide in response to local stimuli, to replace lost cells, in the mammary gland large numbers of cells need to be generated at specific times during puberty, estrous cycles and pregnancy to generate new tissue structures. This puts special demands on the mammary stem cells and requires coordination of local events with systemic needs. Our aim is to understand how the female reproductive hormones control mammary gland development and influence tumorigenesis. We have shown that steroid hormones act in a paracrine fashion in the mammary gland delegating different functions to locally produced factors. These in turn, affect cell-cell interactions that result in changes of cell behavior required for morphogenesis and differentiation. Here, we discuss how these hormonally regulated paracrine interactions may impinge on stem cells and thestem cell niche and how this integration of signals adds extra levels of complexity to current mammary stem cell models. We propose a model whereby the stem cell niches change depending on the developmental stages and the hormonal milieu. According to this model, repeated hormone stimulation of stem cells and their niches in the course of menstrual cycles may be an important early event in breast carcinogenesis and may explain the conundrum why breast cancer risk increases with the number of menstrual cycles experienced prior to a first pregnancy.
机译:乳腺是一种独特的器官,因为它在出生后会在系统激素的控制下经历大部分发育。在大多数其他器官中,干细胞会响应局部刺激而分裂,以替代丢失的细胞,而在乳腺中,在青春期,发情周期和怀孕期间的特定时间需要生成大量细胞,以生成新的组织结构。这对乳腺干细胞提出了特殊要求,并要求将局部事件与全身性需求进行协调。我们的目的是了解女性生殖激素如何控制乳腺发育并影响肿瘤发生。我们已经表明,类固醇激素在乳腺中以旁分泌方式起作用,将不同的功能委托给本地产生的因子。这些反过来影响细胞间的相互作用,从而导致形态发生和分化所需的细胞行为发生变化。在这里,我们讨论这些激素调节的旁分泌相互作用如何影响干细胞和干细胞的生态位,以及这种信号整合如何为当前的乳腺干细胞模型增加额外的复杂性。我们提出了一个模型,其中干细胞生态位根据发育阶段和激素环境而变化。根据该模型,在月经周期中反复刺激干细胞及其壁ni可能是乳腺癌致癌的重要早期事件,并且可能解释了为什么在初次经历月经周期的次数后乳腺癌风险会增加的难题。怀孕。

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