首页> 外文期刊>Placenta >Functional expression of the human neonatal Fc-receptor, hFcRn, in isolated cultured human syncytiotrophoblasts.
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Functional expression of the human neonatal Fc-receptor, hFcRn, in isolated cultured human syncytiotrophoblasts.

机译:人类新生儿Fc受体hFcRn在分离培养的人类合体滋养层细胞中的功能表达。

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摘要

Materno-fetal IgG transfer in the mature human placenta involves transport across the syncytiotrophoblast (STB) and fetal endothelial cell layer. The MHC class I-related Fc gamma-receptor (hFcRn) localized in STB as well as in endothelial cells is involved in overall IgG transfer from the maternal into the fetal circulation. Functional hFcRn is a heterodimer of a transmembrane alpha-chain and beta2-microglobulin. To establish the basis for future studies to unravel the mechanism of IgG transport in STB, we investigated hFcRn alpha-chain and beta2-microglobulin expression in cytotrophoblasts (CTB) isolated from human term placentae and cultured in vitro under conditions where differentiation into multinuclear STB takes place (>or=48 h). Northern blot analysis demonstrated up-regulation of alpha-chain mRNA after 48 h of in vitro cultivation. Likewise, hFcRn alpha-chain and beta2-microglobulin were at the limit of detection by immunofluorescence microscopy in CTB immediately after isolation, but their expression increased upon STB formation. hFcRn alpha-chain co-localized with beta2-microglobulin in multinuclear STB and formed a functional, i.e. low pH IgG binding, receptor as shown by affinity isolation. The in vitro differentiated STB exhibited specific, low pH-dependent IgG binding to the plasma membrane. In conclusion, these cultures can now be applied to study the role of hFcRn in IgG transport and trafficking in STB cultures in vitro.
机译:成熟人胎盘中的母胎-胎儿IgG转移涉及跨合体滋养层细胞(STB)和胎儿内皮细胞层的转运。位于机顶盒以及内皮细胞中的MHC I类相关Fcγ受体(hFcRn)参与了从母​​体到胎儿循环的整体IgG转移。功能性hFcRn是跨膜α-链和β2-微球蛋白的异二聚体。为了建立进一步研究以阐明STB中IgG转运机制的基础,我们研究了从人足胎盘分离并在分化为多核STB的条件下体外培养的细胞滋养层(CTB)中hFcRnα链和β2-微球蛋白的表达放置(>或= 48小时)。 Northern印迹分析显示体外培养48小时后,α链mRNA上调。同样,hFcRnα-链和β2-微球蛋白在分离后立即通过免疫荧光显微镜检测在CTB中处于检测极限,但它们的表达随STB的形成而增加。 hFcRnα链与beta2-微球蛋白共定位于多核STB中,并形成功能性(即低pH IgG结合)受体,如亲和力分离所示。体外分化的STB表现出特异的,低pH依赖性的IgG与质膜结合。总之,现在可以将这些培养物用于研究hFcRn在体外STB培养物中IgG转运和运输中的作用。

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