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Expression of Adrenomedullin 2 (ADM2)/Intermedin (IMD) in Human Placenta: Role in Trophoblast Invasion and Migration1

机译:肾上腺髓质素2(ADM2)/中间蛋白(IMD)在人类胎盘中的表达:在滋养细胞侵袭和迁移中的作用1

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摘要

Calcitonin gene-related peptide (CALCB), amylin, and adrenomedullin (ADM) belong to a unique group of calcitonin (CALCA)/CALCB family peptides that have overlapping biological effects owing to their structure and cross-reactivity between receptors. CALCB and ADM are expressed in fetoplacental tissues and are important in maintaining normal placental function. Recently, ADM 2 (ADM2)/intermedin was identified as a novel CALCA/CALCB family peptide that functions through CALCB and ADM receptors. ADM2 is expressed in the pituitary, digestive tract, and other organs of vertebrates and reduces blood pressure in both normal and hypertensive rats. We recently reported that the level of immunoreactive ADM2 is significantly upregulated in pregnant rats and that its hypotensive effects are also increased during rat pregnancy. Furthermore, infusion of ADM2 antagonist in pregnant rats causes fetoplacental growth restriction. The objective of this study was to analyze the expression and possible role of ADM2 in human placenta. We show that ADM2 mRNA is expressed in human placenta and that immunoreactive ADM2 is localized in syncytiotrophoblasts, cytotrophoblasts, and endothelial cells throughout human pregnancy. This study also demonstrates that ADM2 enhances the invasion and migration of first-trimester HTR-8SV/neo cells. ADM2 increases the invasive index of HTR-8SV/neo cells by 2.2-fold compared with controls. Taken together, the findings from this study suggest that ADM2 may have a role in the physiology of human pregnancy via regulation of trophoblast invasion and migration.
机译:降钙素基因相关肽(CALCB),胰岛淀粉样多肽和肾上腺髓质素(ADM)属于降钙素(CALCA)/ CALCB家族肽的独特组,由于它们的结构和受体之间的交叉反应性,它们具有重叠的生物学效应。 CALCB和ADM在胎盘组织中表达,对维持正常的胎盘功能很重要。最近,ADM 2(ADM2)/ intermedin被鉴定为通过CALCB和ADM受体起作用的新型CALCA / CALCB家族肽。 ADM2在脊椎动物的垂体,消化道和其他器官中表达,并能在正常和高血压大鼠中降低血压。我们最近报道,在怀孕的大鼠中,免疫反应性ADM2的水平显着上调,并且在大鼠怀孕期间其降压作用也有所增加。此外,在怀孕大鼠中输注ADM2拮抗剂会导致胎儿胎盘生长受限。这项研究的目的是分析ADM2在人类胎盘中的表达及其可能的作用。我们显示,ADM2 mRNA在人类胎盘中表达,并且免疫反应性ADM2在整个人类怀孕期间都位于合体滋养层细胞,细胞滋养层和内皮细胞中。这项研究还表明,ADM2增强了妊娠中期HTR-8SV / neo细胞的侵袭和迁移。与对照相比,ADM2将HTR-8SV / neo细胞的侵袭指数提高了2.2倍。两者合计,这项研究的发现表明ADM2可能通过调节滋养层细胞的侵袭和迁移在人类怀孕的生理过程中发挥作用。

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