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多组学分析黏附性长期治疗阻塞性睡眠呼吸暂停患者的循环外泌体。

Multi-Omics Analysis of Circulating Exosomes in Adherent Long-Term Treated OSA Patients.

机构信息

Department of Child Health, Child Health Research Institute, School of Medicine, University of Missouri, Columbia, MO 65211, USA.

Translational Research Unit, Hospital Universitario Miguel Servet & IISAragon, CIBERES, 50009 Zaragoza, Spain.

出版信息

Int J Mol Sci. 2023 Nov 8;24(22):16074. doi: 10.3390/ijms242216074.

Abstract

Obstructive sleep apnea (OSA) is a highly prevalent chronic disease affecting nearly a billion people globally and increasing the risk of multi-organ morbidity and overall mortality. However, the mechanisms underlying such adverse outcomes remain incompletely delineated. Extracellular vesicles (exosomes) are secreted by most cells, are involved in both proximal and long-distance intercellular communication, and contribute toward homeostasis under physiological conditions. A multi-omics integrative assessment of plasma-derived exosomes from adult OSA patients prior to and after 1-year adherent CPAP treatment is lacking. We conducted multi-omic integrative assessments of plasma-derived exosomes from adult OSA patients prior to and following 1-year adherent CPAP treatment to identify potential specific disease candidates. Fasting morning plasma exosomes isolated from 12 adult patients with polysomnographically-diagnosed OSA were analyzed before and after 12 months of adherent CPAP therapy (mean ≥ 6 h/night) (OSAT). Exosomes were characterized by flow cytometry, transmission electron microscopy, and nanoparticle tracking analysis. Endothelial cell barrier integrity, wound healing, and tube formation were also performed. Multi-omics analysis for exosome cargos was integrated. Exosomes derived from OSAT improved endothelial permeability and dysfunction as well as significant improvement in tube formation compared with OSA. Multi-omic approaches for OSA circulating exosomes included lipidomic, proteomic, and small RNA (miRNAs) assessments. We found 30 differentially expressed proteins (DEPs), 72 lipids (DELs), and 13 miRNAs (DEMs). We found that the cholesterol metabolism (has04979) pathway is associated with lipid classes in OSA patients. Among the 12 subjects of OSA and OSAT, seven subjects had complete comprehensive exosome cargo information including lipids, proteins, and miRNAs. Multi-omic approaches identify potential signature biomarkers in plasma exosomes that are responsive to adherent OSA treatment. These differentially expressed molecules may also play a mechanistic role in OSA-induced morbidities and their reversibility. Our data suggest that a multi-omic integrative approach might be useful in understanding how exosomes function, their origin, and their potential clinical relevance, all of which merit future exploration in the context of relevant phenotypic variance. Developing an integrated molecular classification should lead to improved diagnostic classification, risk stratification, and patient management of OSA by assigning molecular disease-specific therapies.

摘要

阻塞性睡眠呼吸暂停(OSA)是一种全球范围内普遍存在的慢性疾病,影响近 10 亿人,增加了多器官发病和总体死亡率的风险。然而,这种不良后果的机制仍不完全明确。细胞外囊泡(exosomes)是大多数细胞分泌的,参与近端和远距离细胞间通讯,并在生理条件下维持内稳态。缺乏对成人 OSA 患者在接受 1 年持续气道正压通气(CPAP)治疗前后血浆衍生 exosomes 的多组学综合评估。我们对成人 OSA 患者在接受 1 年持续 CPAP 治疗前后的血浆衍生 exosomes 进行了多组学综合评估,以确定潜在的特定疾病候选物。对 12 例经多导睡眠图诊断为 OSA 的成年患者的空腹晨血浆 exosomes 进行了分离,分别在 12 个月的持续 CPAP 治疗(平均每晚≥6 小时)前后进行了分析(OSAT)。通过流式细胞术、透射电子显微镜和纳米颗粒跟踪分析对 exosomes 进行了表征。还进行了内皮细胞屏障完整性、伤口愈合和管形成实验。对 exosome cargos 进行了多组学分析。与 OSA 相比,OSAT 衍生的 exosomes 改善了内皮通透性和功能障碍,并显著改善了管形成。对 OSA 循环 exosomes 的多组学方法包括脂质组学、蛋白质组学和小 RNA(miRNAs)评估。我们发现 30 个差异表达蛋白(DEPs)、72 个脂质(DELs)和 13 个 miRNA(DEMs)。我们发现胆固醇代谢(has04979)途径与 OSA 患者的脂质类有关。在 12 名 OSA 和 OSAT 受试者中,有 7 名受试者具有完整的综合 exosome cargos 信息,包括脂质、蛋白质和 miRNAs。多组学方法鉴定了对持续 OSA 治疗有反应的血浆 exosomes 中的潜在特征生物标志物。这些差异表达的分子也可能在 OSA 诱导的发病机制及其可逆性中发挥机制作用。我们的数据表明,多组学综合方法可能有助于理解 exosomes 的功能、来源及其潜在的临床相关性,所有这些都值得在相关表型变异的背景下进一步探索。开发综合分子分类方法可能有助于改善 OSA 的诊断分类、风险分层和患者管理,通过分配分子特异性疾病治疗方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b49e/10671639/6dd6268f6648/ijms-24-16074-g001.jpg

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