Kisspeptin prevents pregnancy loss by modulating the immune microenvironment at the maternal‐fetal interface in recurrent spontaneous abortion

免疫系统 FOXP3型 蜕膜 生物 流式细胞术 脾脏 免疫学 内分泌学 胎儿 内科学 医学 胎盘 怀孕 遗传学
作者
Yanhong Yang,Saizhe Song,Shuting Gu,Yanzheng Gu,Ping Zhao,Dongxiao Li,Cheng Wei,Cuiping Liu,Hong Zhang
出处
期刊:American Journal of Reproductive Immunology [Wiley]
卷期号:91 (2) 被引量:1
标识
DOI:10.1111/aji.13818
摘要

Abstract Problem Immune factors are crucial in the development of recurrent spontaneous abortion (RSA). This study aimed to investigate whether kisspeptin regulates immune cells at the maternal‐fetal interface and whether G protein‐coupled receptor 54 (GPR54) is involved in this process, through which it contributes to the pathogenesis of RSA. Method of study Normal pregnancy (NP) (CBA/J × BALB/c) and RSA (CBA/J × DBA/2) mouse models were established. NP mice received tail vein injections of PBS and KP234 (blocker of kisspeptin receptor), whereas RSA mice received PBS and KP10 (active fragment of kisspeptin). The changes in immune cells in mouse spleen and uterus were assessed using flow cytometry and immunofluorescence. The expression of critical cytokines was examined by flow cytometry, ELISA, Western blotting, and qPCR. Immunofluorescence was employed to detect the coexpression of FOXP3 and GPR54. Results The findings revealed that the proportion of Treg cells, MDSCs, and M2 macrophages in RSA mice was lower than that in NP mice, but it increased following the tail vein injection of KP10. Conversely, the proportion of these cells was reduced in NP mice after the injection of KP234. However, the trend of γδT cell proportion change is contrary to these cells. Furthermore, FOXP3 and GPR54 were coexpressed in mouse spleen and uterus Treg cells as well as in the human decidua samples. Conclusion Our results suggest that kisspeptin potentially participates in the pathogenesis of RSA by influencing immune cell subsets at the maternal‐fetal interface, including Treg cells, MDSC cells, γδT cells, and M2 macrophages.
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