Department of Medicine and Surgery, University of Perugia, Polo Unico Sant'Andrea delle Fratte, P.e Lucio Severi 1, 06132 Perugia, Italy.
Department of Obstetrics and Gynecology, University Hospital of Perugia, Sant'Andrea delle Fratte, P.e Lucio Severi 1, 06132 Perugia, Italy.
Int J Mol Sci. 2023 Jan 28;24(3):2527. doi: 10.3390/ijms24032527.
In pregnancy, human amniotic fluid extracellular vesicles (HAF-EVs) exert anti-inflammatory effects on T cells and on monocytes, supporting their immunoregulatory roles. The specific mechanisms are still not completely defined. The aim of this study was to investigate the ability of HAF-EVs, isolated from pregnant women who underwent amniocentesis and purified by gradient ultracentrifugation, to affect inflammasome activation in the human monocytes. Proteomic studies revealed that HAF-EV samples expressed several immunoregulatory molecules as well as small amounts of endotoxin. Surprisingly, metagenomic analysis shows the presence of specific bacterial strain variants associated with HAF-EVs as potential sources of the endotoxin. Remarkably, we showed that a single treatment of THP-1 cells with HAF-EVs triggered inflammasome activation, whereas the same treatment followed by LPS and ATP sensitization prevented inflammasome activation, a pathway resembling monocyte refractories. A bioinformatics analysis of microbiota-HAF-EVs functional pathways confirmed the presence of enzymes for endotoxin biosynthesis as well as others associated with immunoregulatory functions. Overall, these data suggest that HAF-EVs could serve as a source of the isolation of a specific microbiota during early pregnancy. Moreover, HAF-EVs could act as a novel system to balance immune training and tolerance by modulating the inflammasome in monocytes or other cells.
在妊娠期间,人羊水细胞外囊泡(HAF-EVs)对 T 细胞和单核细胞发挥抗炎作用,支持其免疫调节作用。具体机制仍不完全明确。本研究旨在探讨从接受羊膜穿刺术并通过梯度超速离心纯化的孕妇中分离的 HAF-EVs 对人单核细胞中炎症小体激活的影响。蛋白质组学研究表明,HAF-EV 样本表达了几种免疫调节分子以及少量内毒素。令人惊讶的是,宏基因组分析显示存在与 HAF-EVs 相关的特定细菌菌株变体,它们可能是内毒素的潜在来源。值得注意的是,我们表明,HAF-EVs 单次处理 THP-1 细胞即可触发炎症小体激活,而相同处理后用 LPS 和 ATP 敏化则可防止炎症小体激活,这一途径类似于单核细胞的难治性。对微生物组-HAF-EVs 功能途径的生物信息学分析证实了内毒素生物合成酶以及其他与免疫调节功能相关的酶的存在。总体而言,这些数据表明 HAF-EVs 可能是在早期妊娠期间分离特定微生物组的来源。此外,HAF-EVs 可以通过调节单核细胞或其他细胞中的炎症小体,成为平衡免疫训练和耐受的新系统。