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母体 IL-17a 在胎盘膜上的可视化。

Visualization of maternal IL-17a across the placental membrane.

机构信息

Department of Medicinal Biotechnology, College of Health Science, Dong-A University, Busan, Korea (the Republic of).

出版信息

Sci Prog. 2023 Jul-Sep;106(3):368504231195500. doi: 10.1177/00368504231195500.

Abstract

IL-17a is a pro-inflammatory cytokine produced primarily by T helper-17 cells. Several studies have shown that maternal IL-17a, associated with maternal immune activation (MIA), affects the developing brain. However, the mechanisms underlying maternal IL-17a signaling remain partially unknown. This study detected trans-placental IL-17a passage using luminescent activity studies and an transfer assay. First, the luminescent activity was observed using LiCoR dye-conjugated IL-17a injected into pregnant mice. IL-17a luminescent activity was highly detected in the placenta and isolated fetus, but positive control IgG and negative control IgM showed low or no luminescence in the placenta and fetus, respectively. Next, IL-17a transmission across the placenta was investigated using a transwell experiment with trophoblast BeWo cells and primary trophoblast cells. Significant amounts of IL-17a were detected in the lower compartment. And in various placenta cell lines, IL-17a treatment significantly increased IL-17RA mRNA expression. However, it did not affect IL-17RC mRNA expression.This study showed that elevated IL-17a increased the IL-17RA expression in the trophoblast and may accumulate in the placenta. Furthermore, these results indicate the molecular basis of an important role in IL-17a/IL-17RA in the maternal placenta.

摘要

IL-17a 是一种主要由辅助性 T 细胞 17(Th17)细胞产生的促炎细胞因子。多项研究表明,与母体免疫激活(MIA)相关的母体 IL-17a 会影响发育中的大脑。然而,母体 IL-17a 信号转导的机制仍部分未知。本研究通过发光活性研究和转移测定法检测了胎盘间的 IL-17a 转移。首先,用注射到怀孕小鼠体内的 LiCoR 染料缀合的 IL-17a 观察发光活性。在胎盘和分离的胎儿中高度检测到 IL-17a 的发光活性,但阳性对照 IgG 和阴性对照 IgM 在胎盘和胎儿中分别显示低发光或无发光。接下来,使用转染小室实验用滋养层 BeWo 细胞和原代滋养层细胞研究 IL-17a 在胎盘内的传递。在下室中检测到大量的 IL-17a。在各种胎盘细胞系中,IL-17a 处理显著增加了 IL-17RA mRNA 的表达。然而,它并不影响 IL-17RC mRNA 的表达。本研究表明,升高的 IL-17a 增加了滋养层中的 IL-17RA 表达,并可能在胎盘内蓄积。此外,这些结果表明 IL-17a/IL-17RA 在母体胎盘内发挥重要作用的分子基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/de79/10467380/4615b4828275/10.1177_00368504231195500-fig1.jpg

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