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通过诱导痰上清液的脂质组学分析对哮喘进行分层。

Stratification of asthma by lipidomic profiling of induced sputum supernatant.

作者信息

Brandsma Joost, Schofield James P R, Yang Xian, Strazzeri Fabio, Barber Clair, Goss Victoria M, Koster Grielof, Bakke Per S, Caruso Massimo, Chanez Pascal, Dahlén Sven-Erik, Fowler Stephen J, Horváth Ildikó, Krug Norbert, Montuschi Paolo, Sanak Marek, Sandström Thomas, Shaw Dominick E, Chung Kian Fan, Singer Florian, Fleming Louise J, Adcock Ian M, Pandis Ioannis, Bansal Aruna T, Corfield Julie, Sousa Ana R, Sterk Peter J, Sánchez-García Rubén J, Skipp Paul J, Postle Anthony D, Djukanović Ratko

机构信息

Clinical and Experimental Sciences, Faculty of Medicine, University of Southampton, Southampton, United Kingdom; National Institute for Health Research Southampton Biomedical Research Centre, Southampton, United Kingdom.

National Institute for Health Research Southampton Biomedical Research Centre, Southampton, United Kingdom; Centre for Proteomic Research, Biological Sciences, University of Southampton, Southampton, United Kingdom.

出版信息

J Allergy Clin Immunol. 2023 Jul;152(1):117-125. doi: 10.1016/j.jaci.2023.02.032. Epub 2023 Mar 12.

Abstract

BACKGROUND

Asthma is a chronic respiratory disease with significant heterogeneity in its clinical presentation and pathobiology. There is need for improved understanding of respiratory lipid metabolism in asthma patients and its relation to observable clinical features.

OBJECTIVE

We performed a comprehensive, prospective, cross-sectional analysis of the lipid composition of induced sputum supernatant obtained from asthma patients with a range of disease severities, as well as from healthy controls.

METHODS

Induced sputum supernatant was collected from 211 adults with asthma and 41 healthy individuals enrolled onto the U-BIOPRED (Unbiased Biomarkers for the Prediction of Respiratory Disease Outcomes) study. Sputum lipidomes were characterized by semiquantitative shotgun mass spectrometry and clustered using topologic data analysis to identify lipid phenotypes.

RESULTS

Shotgun lipidomics of induced sputum supernatant revealed a spectrum of 9 molecular phenotypes, highlighting not just significant differences between the sputum lipidomes of asthma patients and healthy controls, but also within the asthma patient population. Matching clinical, pathobiologic, proteomic, and transcriptomic data helped inform the underlying disease processes. Sputum lipid phenotypes with higher levels of nonendogenous, cell-derived lipids were associated with significantly worse asthma severity, worse lung function, and elevated granulocyte counts.

CONCLUSION

We propose a novel mechanism of increased lipid loading in the epithelial lining fluid of asthma patients resulting from the secretion of extracellular vesicles by granulocytic inflammatory cells, which could reduce the ability of pulmonary surfactant to lower surface tension in asthmatic small airways, as well as compromise its role as an immune regulator.

摘要

背景

哮喘是一种慢性呼吸道疾病,其临床表现和病理生物学存在显著异质性。需要更好地了解哮喘患者的呼吸脂质代谢及其与可观察到的临床特征的关系。

目的

我们对从患有一系列疾病严重程度的哮喘患者以及健康对照者获得的诱导痰上清液的脂质组成进行了全面、前瞻性、横断面分析。

方法

从参与U-BIOPRED(预测呼吸道疾病结局的无偏倚生物标志物)研究的211名成年哮喘患者和41名健康个体中收集诱导痰上清液。通过半定量鸟枪法质谱对痰液脂质组进行表征,并使用拓扑数据分析进行聚类以识别脂质表型。

结果

诱导痰上清液的鸟枪法脂质组学揭示了9种分子表型,不仅突出了哮喘患者和健康对照者痰液脂质组之间的显著差异,也突出了哮喘患者群体内部的差异。匹配的临床、病理生物学、蛋白质组学和转录组学数据有助于了解潜在的疾病过程。非内源性、细胞衍生脂质水平较高的痰液脂质表型与哮喘严重程度显著更差、肺功能更差和粒细胞计数升高相关。

结论

我们提出了一种新机制,即粒细胞炎性细胞分泌细胞外囊泡导致哮喘患者上皮衬液中脂质负荷增加,这可能会降低肺表面活性物质降低哮喘小气道表面张力的能力,并损害其作为免疫调节剂的作用。

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