Non-coding RNA regulates the immune microenvironment in recurrent spontaneous abortion (RSA): new insights into immune mechanisms

Author:

Tang Cen1,Hu Wanqin1

Affiliation:

1. Obstetrics Department, Kunming Medical University Second Affiliated Hospital , Kunming, Yunnan, China

Abstract

Abstract Recurrent spontaneous abortion (RSA) has various causes, including chromosomal abnormalities, prethrombotic state, and abnormal uterine anatomical factors. However, the pathogenesis of RSA is still unclear. Surprisingly, non-coding RNA can stably express at the maternal-fetal interface and regulate immune cells’ proliferation, apoptosis, invasion, metastasis, and angiogenesis. Accumulating evidence suggests that the competing endogenous RNA (ceRNA) regulatory network between non-coding RNAs complicates RSA’s pathological process and maybe a new starting point for exploring RSA. In this review, we mainly discuss the regulatory network and potential significance of non-coding RNA in the immune microenvironment of RSA patients. In addition, the cellular interactions of non-coding RNA transported through vesicles were introduced from aspects of trophoblast function and immune regulation. Finally, we analyze previous studies and further discuss that the stable expression of non-coding RNA may be used as a biomarker of some disease states and a prediction target of RSA.

Funder

National Natural Science Foundation of China

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,General Medicine,Reproductive Medicine

Reference78 articles.

1. Myeloproliferative neoplasms and pregnancy: overview and practice recommendations;Naseema;Am J Hematol,2020

2. Maternal T regulatory cell depletion impairs embryo implantation which can be corrected with adoptive t regulatory cell transfer;Heitmann;Reprod Sci,2017

3. Immunotherapy for recurrent pregnancy loss;Carp;Best Pract Res Clin Obstet Gynaecol,2019

4. The etiology of preeclampsia;Eunjung;Am J Obstet Gynecol,2022

5. Lymphocytes immunotherapy for preserving pregnancy: mechanisms and Challenges;Hajipour;Am J Reprod Immunol,2018

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