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羊水和母体血浆中小细胞外囊泡中的 microRNAs 与小鼠胎儿腭发育相关。

MicroRNAs in Small Extracellular Vesicles from Amniotic Fluid and Maternal Plasma Associated with Fetal Palate Development in Mice.

机构信息

Laboratory of Orofacial Development, Laboratory of Molecular Signaling and Stem Cells Therapy, Molecular Laboratory for Gene Therapy and Tooth Regeneration, Beijing Key Laboratory of Tooth Regeneration and Function Reconstruction, Capital Medical University School of Stomatology, Tiantan Xili No. 4, Beijing 100050, China.

Department of Geriatric Dentistry, Capital Medical University School of Stomatology, Tiantan Xili No. 4, Beijing 100050, China.

出版信息

Int J Mol Sci. 2023 Dec 6;24(24):17173. doi: 10.3390/ijms242417173.

Abstract

Cleft palate (CP) is a common congenital birth defect. Cellular and morphological processes change dynamically during palatogenesis, and any disturbance in this process could result in CP. However, the molecular mechanisms steering this fundamental phase remain unclear. One study suggesting a role for miRNAs in palate development via maternal small extracellular vesicles (SEVs) drew our attention to their potential involvement in palatogenesis. In this study, we used an in vitro model to determine how SEVs derived from amniotic fluid (ASVs) and maternal plasma (MSVs) influence the biological behaviors of mouse embryonic palatal mesenchyme (MEPM) cells and medial edge epithelial (MEE) cells; we also compared time-dependent differential expression (DE) miRNAs in ASVs and MSVs with the DE mRNAs in palate tissue from E13.5 to E15.5 to study the dynamic co-regulation of miRNAs and mRNAs during palatogenesis in vivo. Our results demonstrate that some pivotal biological activities, such as MEPM proliferation, migration, osteogenesis, and MEE apoptosis, might be directed, in part, by stage-specific MSVs and ASVs. We further identified interconnected networks and key miRNAs such as miR-744-5p, miR-323-5p, and miR-3102-5p, offering a roadmap for mechanistic investigations and the identification of early CP biomarkers.

摘要

腭裂(CP)是一种常见的先天性出生缺陷。在腭发生过程中,细胞和形态发生过程动态变化,任何过程的干扰都可能导致 CP。然而,指导这一基本阶段的分子机制尚不清楚。一项关于 miRNA 通过母体小细胞外囊泡(SEVs)在腭发育中作用的研究引起了我们对其在腭发生中潜在作用的关注。在这项研究中,我们使用体外模型来确定羊水(ASVs)和母体血浆(MSVs)衍生的 SEVs 如何影响小鼠胚胎腭中胚层(MEPM)细胞和中嵴上皮(MEE)细胞的生物学行为;我们还比较了 ASVs 和 MSVs 中时间依赖性差异表达(DE)miRNA 与 E13.5 至 E15.5 期间腭组织中 DE mRNA 的差异,以研究体内腭发生过程中 miRNA 和 mRNA 的动态共调控。我们的结果表明,一些关键的生物学活性,如 MEPM 增殖、迁移、成骨和 MEE 凋亡,可能部分由特定阶段的 MSVs 和 ASVs 指导。我们进一步鉴定了相互关联的网络和关键 miRNA,如 miR-744-5p、miR-323-5p 和 miR-3102-5p,为机制研究和早期 CP 生物标志物的鉴定提供了路线图。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9b59/10743272/32cf68c1fb4a/ijms-24-17173-g001.jpg

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