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Dynamic Regulation of Wnt7a Expression in the Primate Endometrium: Implications for Postmenstrual Regeneration and Secretory Transformation

机译:Wnt7a表达在灵长类动物子宫内膜中的动态调节:对月经后再生和分泌物转化的影响。

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摘要

Despite the vital physiological role of endometrial regeneration during the menstrual cycle and the various pathological implications of abnormal growth of endometrial epithelial cells, the local factors and regulatory mechanisms involved in endometrial regeneration and growth have not been well characterized. Here, we examine the pattern, hormone dependence, and potential functions of Wnt7a (wingless-type MMTV integration site family member 7a), which is known to play a critical role in the formation of the mouse endometrial epithelium during embryonic development, in both human and artificially cycling rhesus macaque endometrium, and using a potent Wnt-antagonist in a mouse model of endometrial regeneration. Wnt7a transcript levels were examined using quantitative real-time PCR and in situ hybridization, and immunohistochemistry was performed to detect Ki-67 and 3,5-bromodeoxyuridine. Stringent, fully conditional Wnt inhibition was achieved by adenoviral expression of Dickkopf-1 during artificial endometrial regeneration in mice. In macaques, Wnt7a expression was confined to the newly formed luminal epithelium (LE) and upper glands during the postmenstrual repair phase. The signal increased in the LE during the proliferative phase but decreased in the upper glands and was undetectable in the glands by the late proliferative phase. Interestingly, Wnt7a was completely suppressed in the LE and remained undetectable in other cell types after 7 d of progesterone treatment. The pattern of Wnt7a expression in the human endometrium was similar to that in macaques. Blockade of Wnt signaling during endometrial regeneration in mice resulted in a dramatic delay in reepithelialization and degeneration of glands and LE. These results strongly suggest, for the first time, a role for Wnt7a in postmenstrual regeneration and proliferation of endometrial glands and LE in primates, and its dramatic suppression by progesterone is likely essential for secretory transformation of the epithelium.
机译:尽管子宫内膜再生在月经周期中起着至关重要的生理作用,并且子宫内膜上皮细胞异常生长具有各种病理学意义,但子宫内膜再生和生长所涉及的局部因素和调控机制尚未得到很好的表征。在这里,我们研究了Wnt7a(无翼型MMTV整合位点家族成员7a)的模式,激素依赖性和潜在功能,这两个基因在人类胚胎发育过程中在小鼠子宫内膜上皮的形成中起着至关重要的作用。和人工循环恒河猴猕猴的子宫内膜,并在小鼠子宫内膜再生模型中使用强效的Wnt拮抗剂。使用定量实时PCR和原位杂交检查Wnt7a转录水平,并进行免疫组化检测Ki-67和3,5-溴脱氧尿苷。在小鼠的人工子宫内膜再生过程中,Dickkopf-1的腺病毒表达可实现严格的,完全有条件的Wnt抑制作用。在猕猴中,Wnt7a表达在月经后修复阶段局限于新形成的腔上皮(LE)和上腺。在增生期,LE中的信号增加,但在上腺中,信号减弱,到增生后期,在腺体中检测不到。有趣的是,孕酮治疗7天后,Wnt7a在LE中被完全抑制,而在其他细胞类型中仍未检测到。 Wnt7a在人类子宫内膜中的表达模式与猕猴相似。小鼠子宫内膜再生过程中对Wnt信号的阻断导致了再上皮化以及腺体和LE变性的显着延迟。这些结果强烈表明,Wnt7a在月经后子宫内膜腺体再生和增殖以及灵长类中的LE中起着重要作用,而黄体酮对Wnt7a的显着抑制可能对上皮的分泌转化至关重要。

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