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呼出气挥发性有机化合物可区分中性粒细胞性和嗜酸性粒细胞性哮喘。

Exhaled Volatile Organic Compounds Are Able to Discriminate between Neutrophilic and Eosinophilic Asthma.

机构信息

1Respiratory Medicine, GIGA I3, CHU Sart-Tilman, Liege, Belgium.

2Organic and Biological Analytical Chemistry Group and.

出版信息

Am J Respir Crit Care Med. 2019 Aug 15;200(4):444-453. doi: 10.1164/rccm.201811-2210OC.

Abstract

Analysis of exhaled breath for asthma phenotyping using endogenously generated volatile organic compounds (VOCs) offers the possibility of noninvasive diagnosis and therapeutic monitoring. Induced sputum is indeed not widely available and markers of neutrophilic asthma are still lacking. To determine whether analysis of exhaled breath using endogenously generated VOCs can be a surrogate marker for recognition of sputum inflammatory phenotypes. We conducted a prospective study on 521 patients with asthma recruited from the University Asthma Clinic of Liege. Patients underwent VOC measurement, fraction of exhaled nitric oxide (Fe) spirometry, sputum induction, and gave a blood sample. Subjects with asthma were classified in three inflammatory phenotypes according to their sputum granulocytic cell count. In the discovery study, seven potential biomarkers were highlighted by gas chromatography-mass spectrometry in a training cohort of 276 patients with asthma. In the replication study ( = 245), we confirmed four VOCs of interest to discriminate among asthma inflammatory phenotypes using comprehensive two-dimensional gas chromatography coupled to high-resolution time-of-flight mass spectrometry. Hexane and 2-hexanone were identified as compounds with the highest classification performance in eosinophilic asthma with accuracy comparable to that of blood eosinophils and Fe. Moreover, the combination of Fe, blood eosinophils, and VOCs gave a very good prediction of eosinophilic asthma (area under the receiver operating characteristic curve, 0.9). For neutrophilic asthma, the combination of nonanal, 1-propanol, and hexane had a classification performance similar to Fe or blood eosinophils in eosinophilic asthma. Those compounds were found in higher levels in neutrophilic asthma. Our study is the first attempt to characterize VOCs according to sputum granulocytic profile in a large population of patients with asthma and provide surrogate markers for neutrophilic asthma.

摘要

利用内源性挥发性有机化合物(VOCs)分析呼气用于哮喘表型分析提供了非侵入性诊断和治疗监测的可能性。诱导痰实际上并不广泛可用,并且缺乏中性粒细胞性哮喘的标志物。为了确定使用内源性产生的 VOCs 分析呼气是否可以作为识别痰炎症表型的替代标志物。我们对来自列日大学哮喘诊所的 521 名哮喘患者进行了一项前瞻性研究。患者接受了 VOC 测量、呼气一氧化氮(Fe)肺量测定、痰液诱导,并采集了血液样本。根据痰中性粒细胞计数,将哮喘患者分为三种炎症表型。在发现研究中,通过气相色谱-质谱法在 276 名哮喘患者的训练队列中突出了七个潜在的生物标志物。在复制研究( = 245)中,我们使用二维气相色谱法与高分辨率飞行时间质谱法相结合,确认了四个有意义的 VOC 来区分哮喘炎症表型。己烷和 2-己酮被鉴定为嗜酸粒细胞性哮喘中具有最高分类性能的化合物,其准确性与血嗜酸粒细胞和 Fe 相当。此外,Fe、血嗜酸粒细胞和 VOC 的组合对嗜酸粒细胞性哮喘具有很好的预测作用(接收者操作特征曲线下面积,0.9)。对于中性粒细胞性哮喘,非醛、1-丙醇和己烷的组合在嗜酸粒细胞性哮喘中的分类性能与 Fe 或血嗜酸粒细胞相似。这些化合物在中性粒细胞性哮喘中含量较高。我们的研究首次尝试根据痰液中性粒细胞谱在大样本哮喘患者中对 VOCs 进行特征描述,并提供中性粒细胞性哮喘的替代标志物。

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