Hamutoğlu Rasim, Bulut Hüseyin Eray, Kaloğlu Celal, Önder Ozan, Dağdeviren Tuğba, Aydemir Merve Nur, Korkmaz Ertan Mahir
Department of Histology and Embryology Faculty of Medicine Cumhuriyet University Sivas Turkey.
Cumhuriyet University Assisted Reproduction Technology (ART) Center Sivas Turkey.
Reprod Med Biol. 2020 Aug 6;19(4):385-397. doi: 10.1002/rmb2.12342. eCollection 2020 Oct.
We aimed to evaluate how matrix metalloproteinases (MMPs) regulate the trophoblast invasion and placentation.
Female rats were divided into the estrous cycle and early pregnancy day groups. Obtained uterine tissues and implantation sites were processed for immunofluorescence and real-time PCR examinations.
The mRNA expression of MMP-7 was higher than MMP-2 and MMP-9. Immunofluorescence findings confirmed that MMP-2, MMP-7, and MMP-9 were localized in the endometrial stroma, while MMP-7 was high in glandular and lining epithelial cells throughout the entire estrous cycle. However, their immunolocalizations and mRNA expressions were dramatically changed with the early pregnancy days. The MMP-7 reached very strong immunostaining in the giant trophoblast cells (GTCs), and the cytoplasm of mature and differentiating decidual cells, whereas MMP-2 and MMP-9 were mostly seen in the primary decidual zone (PDZ), GTCs, and the endothelium of blood vessels.
All three MMPs seemed likely to be a key mediator of trophoblast invasion into the decidual region as well as angiogenesis during the placentation process. Due to the strong and wide expression of MMP-7 in the mature decidua, it could be suggested that MMP-7 is important for decidual ECM remodeling and it might be used as a new marker of decidual reaction.
我们旨在评估基质金属蛋白酶(MMPs)如何调节滋养层细胞侵袭和胎盘形成。
将雌性大鼠分为动情周期组和妊娠早期组。对获取的子宫组织和着床部位进行免疫荧光和实时聚合酶链反应检测。
MMP - 7的信使核糖核酸(mRNA)表达高于MMP - 2和MMP - 9。免疫荧光结果证实,MMP - 2、MMP - 7和MMP - 9定位于子宫内膜基质,而在整个动情周期中,MMP - 7在腺上皮细胞和衬里上皮细胞中含量较高。然而,随着妊娠早期天数的增加,它们的免疫定位和mRNA表达发生了显著变化。MMP - 7在巨大滋养层细胞(GTCs)以及成熟和分化的蜕膜细胞的细胞质中呈现非常强的免疫染色,而MMP - 2和MMP - 9主要见于初级蜕膜区(PDZ)、GTCs和血管内皮。
在胎盘形成过程中,所有这三种MMPs似乎都是滋养层细胞侵入蜕膜区域以及血管生成的关键介质。由于MMP - 7在成熟蜕膜中强烈且广泛的表达,提示MMP - 7对于蜕膜细胞外基质重塑很重要,并且它可能被用作蜕膜反应的新标志物。