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首次深入了解炎症绵羊模型中细胞外囊泡- microRNA的特征。

First insight into extracellular vesicle-miRNA characterization in a sheep model of inflammation.

作者信息

Ciliberti Maria Giovanna, Santillo Antonella, Sevi Agostino, Albenzio Marzia, De Leo Vincenzo, Ingrosso Chiara, Catucci Lucia, Caroprese Mariangela

机构信息

Department of Agriculture, Food, Natural Resources, and Engineering (DAFNE), University of Foggia, Foggia, Italy.

Department of Chemistry, University of Bari Aldo Moro, Bari, Italy.

出版信息

Front Vet Sci. 2023 Nov 22;10:1186989. doi: 10.3389/fvets.2023.1186989. eCollection 2023.

Abstract

Extracellular vesicles (EVs) and their microRNA (miRNA) cargoes have garnered attention in the veterinary field for their regulatory role in various biological processes. This study aimed to (i) evaluate two techniques of EV isolation from sheep peripheral blood mononuclear cell (PBMC) supernatants using the ultracentrifugation (UC) and reagent (REA) methods and (ii) characterize the EV-miRNA profiles after an inflammatory environment mediated by lipopolysaccharides (LPS). Sheep peripheral blood was collected, and PBMCs were separated using a density gradient reagent. Subsequently, PBMCs were cultured at 37°C for 24 h (5% CO), and the supernatants were collected to perform the EV isolation. The presence of CD81 extracellular vesicle marker was determined, and the purity of isolated EVs was calculated as a ratio between the number of isolated EVs and the protein concentration. Moreover, the morphological characterization revealed mainly round-shaped structures with average sizes of 211 nm for EVs isolated by the UC method and 99 nm for EVs isolated by the REA method. Illumina NextSeq sequencing in a single-end mode was used to characterize the miRNA profile, and the differentially expressed (DE) miRNAs were analyzed using a combination of bioinformatics tools. The results revealed that the REA method is reliable for EV isolation from sheep supernatants. It was considered an improvement of the recovery rate and purity of EVs with the enhancement of the number and the expression levels of characterized miRNAs. The EVs isolated by the UC method after an LPS challenge showed 11 DE miRNAs, among which eight miRNAs were upregulated and three were downregulated. On the other hand, the REA method revealed an EV cargo in which eight DE miRNAs were upregulated and 21 DE miRNAs were downregulated. The master miRNA regulators of the biological process were identified by performing the MIRNA-mRNA network analysis, showing that, among the higher representative miRNAs based on the centrality and betweenness, the miR-26a-5p could have a crucial role in the resolution of inflammation. Moreover, the identification of the let-7 miRNA family in all the EVs showed potential targeted genes that regulate the inflammation and immune responses.

摘要

细胞外囊泡(EVs)及其携带的微小RNA(miRNA)因其在各种生物过程中的调节作用而在兽医领域受到关注。本研究旨在:(i)评估使用超速离心(UC)法和试剂法(REA)从绵羊外周血单个核细胞(PBMC)上清液中分离EVs的两种技术;(ii)表征脂多糖(LPS)介导的炎症环境后的EV-miRNA谱。采集绵羊外周血,使用密度梯度试剂分离PBMC。随后,将PBMC在37°C培养24小时(5% CO₂),收集上清液进行EV分离。测定CD81细胞外囊泡标志物的存在情况,并将分离的EVs纯度计算为分离的EVs数量与蛋白质浓度之比。此外,形态学表征显示,UC法分离的EVs主要为圆形结构,平均大小为211 nm,REA法分离的EVs平均大小为99 nm。采用单端模式的Illumina NextSeq测序来表征miRNA谱,并使用多种生物信息学工具组合分析差异表达(DE)miRNA。结果表明,REA法可可靠地从绵羊上清液中分离EVs。随着特征性miRNA数量和表达水平的提高,该方法被认为提高了EVs的回收率和纯度。LPS刺激后,UC法分离的EVs显示11种DE miRNA,其中8种miRNA上调,3种下调。另一方面,REA法显示一种EV货物,其中8种DE miRNA上调,21种DE miRNA下调。通过进行miRNA-mRNA网络分析鉴定了生物过程的主要miRNA调节因子,结果表明,在基于中心性和中介性的较高代表性miRNA中,miR-26a-5p可能在炎症消退中起关键作用。此外,在所有EVs中鉴定出let-7 miRNA家族,显示出调节炎症和免疫反应的潜在靶基因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a705/10703394/5c4be37fe7b7/fvets-10-1186989-g001.jpg

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