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早孕期母体外周血exosome 小 RNA 谱分析探索早产子痫前期的早期分子途径。

Exosomal small RNA profiling in first-trimester maternal blood explores early molecular pathways of preterm preeclampsia.

机构信息

Gene Regulation Research Group, Institute of Molecular Life Sciences, HUN-REN Research Centre for Natural Sciences, Budapest, Hungary.

Doctoral School of Biology, Institute of Biology, ELTE Eötvös Loránd University, Budapest, Hungary.

出版信息

Front Immunol. 2024 Feb 22;15:1321191. doi: 10.3389/fimmu.2024.1321191. eCollection 2024.

Abstract

INTRODUCTION

Preeclampsia (PE) is a severe obstetrical syndrome characterized by new-onset hypertension and proteinuria and it is often associated with fetal intrauterine growth restriction (IUGR). PE leads to long-term health complications, so early diagnosis would be crucial for timely prevention. There are multiple etiologies and subtypes of PE, and this heterogeneity has hindered accurate identification in the presymptomatic phase. Recent investigations have pointed to the potential role of small regulatory RNAs in PE, and these species, which travel in extracellular vesicles (EVs) in the circulation, have raised the possibility of non-invasive diagnostics. The aim of this study was to investigate the behavior of exosomal regulatory small RNAs in the most severe subtype of PE with IUGR.

METHODS

We isolated exosomal EVs from first-trimester peripheral blood plasma samples of women who later developed preterm PE with IUGR (n=6) and gestational age-matched healthy controls (n=14). The small RNA content of EVs and their differential expression were determined by next-generation sequencing and further validated by quantitative real-time PCR. We also applied the rigorous exceRpt bioinformatics pipeline for small RNA identification, followed by target verification and Gene Ontology analysis.

RESULTS

Overall, >2700 small RNAs were identified in all samples and, of interest, the majority belonged to the RNA interference (RNAi) pathways. Among the RNAi species, 16 differentially expressed microRNAs were up-regulated in PE, whereas up-regulated and down-regulated members were equally found among the six identified Piwi-associated RNAs. Gene ontology analysis of the predicted small RNA targets showed enrichment of genes in pathways related to immune processes involved in decidualization, placentation and embryonic development, indicating that dysregulation of the induced small RNAs is connected to the impairment of immune pathways in preeclampsia development. Finally, the subsequent validation experiments revealed that the hsa_piR_016658 piRNA is a promising biomarker candidate for preterm PE associated with IUGR.

DISCUSSION

Our rigorously designed study in a homogeneous group of patients unraveled small RNAs in circulating maternal exosomes that act on physiological pathways dysregulated in preterm PE with IUGR. Therefore, our small RNA hits are not only suitable biomarker candidates, but the revealed biological pathways may further inform us about the complex pathology of this severe PE subtype.

摘要

简介

子痫前期(PE)是一种严重的产科综合征,其特征为新出现的高血压和蛋白尿,常伴有胎儿宫内生长受限(IUGR)。PE 会导致长期的健康并发症,因此早期诊断对于及时预防至关重要。PE 有多种病因和亚型,这种异质性阻碍了在无症状期的准确识别。最近的研究指出,微小调节 RNA 在 PE 中的潜在作用,这些在循环中外泌体 EV 中运输的物种,提出了非侵入性诊断的可能性。本研究旨在探讨在伴有 IUGR 的最严重 PE 亚型中,外泌体调节性小 RNA 的行为。

方法

我们从随后发展为早产伴有 IUGR 的子痫前期(PE)的女性(n=6)和孕龄匹配的健康对照组(n=14)的第一孕期外周血血浆样本中分离出外泌体 EV。通过下一代测序确定 EV 中的小 RNA 含量及其差异表达,并通过定量实时 PCR 进一步验证。我们还应用了严格的 exceRpt 小 RNA 鉴定生物信息学管道,随后进行了靶标验证和基因本体论分析。

结果

总体而言,所有样本中鉴定出超过 2700 种小 RNA,有趣的是,大多数属于 RNA 干扰(RNAi)途径。在 RNAi 物种中,16 种差异表达的 microRNA 在 PE 中上调,而在鉴定出的 6 种 Piwi 相关 RNA 中,上调和下调的成员同样存在。预测小 RNA 靶标的基因本体论分析显示,与蜕膜化、胎盘形成和胚胎发育相关的免疫过程途径中的基因富集,表明诱导小 RNA 的失调与子痫前期发展中免疫途径的损害有关。最后,后续的验证实验表明,hsa_piR_016658 piRNA 是与 IUGR 相关的早产 PE 的有前途的生物标志物候选物。

讨论

我们在同质患者组中进行的严格设计的研究揭示了循环母体外泌体中的小 RNA,这些小 RNA 作用于在早产伴有 IUGR 的子痫前期中失调的生理途径。因此,我们的小 RNA 靶点不仅是合适的生物标志物候选物,而且揭示的生物学途径还可以使我们进一步了解这种严重 PE 亚型的复杂病理学。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/402e/10917917/fa63bf10685e/fimmu-15-1321191-g001.jpg

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