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与哮喘严重程度相关的精氨酸代谢内型。

Arginine metabolic endotypes related to asthma severity.

作者信息

Xu Weiling, Comhair Suzy A A, Janocha Allison J, Lara Abigail, Mavrakis Lori A, Bennett Carole D, Kalhan Satish C, Erzurum Serpil C

机构信息

Department of Pathobiology, Lerner Research Institute, Cleveland Clinic, Cleveland, Ohio, United States of America.

Respiratory Institute, Cleveland Clinic, Cleveland, Ohio, United States of America.

出版信息

PLoS One. 2017 Aug 10;12(8):e0183066. doi: 10.1371/journal.pone.0183066. eCollection 2017.

Abstract

AIMS

Arginine metabolism via inducible nitric oxide synthase (iNOS) and arginase 2 (ARG2) is higher in asthmatics than in healthy individuals. We hypothesized that a sub-phenotype of asthma might be defined by the magnitude of arginine metabolism categorized on the basis of high and low fraction of exhaled nitric oxide (FENO).

METHODS

To test this hypothesis, asthmatics (n = 52) were compared to healthy controls (n = 51) for levels of FENO, serum arginase activity, and airway epithelial expression of iNOS and ARG2 proteins, in relation to clinical parameters of asthma inflammation and airway reactivity. In parallel, bronchial epithelial cells were evaluated for metabolic effects of iNOS and ARG2 expression in vitro.

RESULTS

Asthmatics with high FENO (≥ 35 ppb; 44% of asthmatics) had higher expression of iNOS (P = 0.04) and ARG2 (P = 0.05) in the airway, indicating FENO is a marker of the high arginine metabolic endotype. High FENO asthmatics had the lowest FEV1% (P < 0.001), FEV1/FVC (P = 0.0002) and PC20 (P < 0.001) as compared to low FENO asthmatics or healthy controls. Low FENO asthmatics had near normal iNOS and ARG2 expression (both P > 0.05), and significantly higher PC20 (P < 0.001) as compared to high FENO asthmatics. In vitro studies to evaluate metabolic effects showed that iNOS overexpression and iNOS+ARG2 co-expression in a human bronchial epithelial cell line led to greater reliance on glycolysis with higher rate of pyruvate going to lactate.

CONCLUSIONS

The high FENO phenotype represents a large portion of the asthma population, and is typified by greater arginine metabolism and more severe and reactive asthma.

摘要

目的

哮喘患者通过诱导型一氧化氮合酶(iNOS)和精氨酸酶2(ARG2)进行的精氨酸代谢高于健康个体。我们假设,哮喘的一个亚表型可能由基于呼出一氧化氮分数(FENO)高低分类的精氨酸代谢程度来定义。

方法

为验证这一假设,将52例哮喘患者与51例健康对照者的FENO水平、血清精氨酸酶活性以及气道上皮中iNOS和ARG2蛋白的表达进行比较,并与哮喘炎症和气道反应性的临床参数相关联。同时,评估支气管上皮细胞在体外iNOS和ARG2表达的代谢效应。

结果

FENO高(≥35 ppb;占哮喘患者的44%)的哮喘患者气道中iNOS(P = 0.04)和ARG2(P = 0.05)的表达较高,表明FENO是高精氨酸代谢内型的标志物。与FENO低的哮喘患者或健康对照者相比,FENO高的哮喘患者的第一秒用力呼气容积百分比(FEV1%,P < 0.001)、FEV1/用力肺活量(FEV1/FVC,P = 0.0002)和激发浓度为20mg/ml时的组胺累积量(PC20,P < 0.001)最低。与FENO高的哮喘患者相比,FENO低的哮喘患者的iNOS和ARG2表达接近正常(均P > 0.05),且PC20显著更高(P < 0.001)。评估代谢效应的体外研究表明,人支气管上皮细胞系中iNOS过表达和iNOS + ARG2共表达导致对糖酵解的依赖性增加,丙酮酸转化为乳酸的速率更高。

结论

FENO高的表型占哮喘人群的很大一部分,其特点是精氨酸代谢增加以及哮喘更严重且反应性更高。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cfdd/5552347/cb20f1e82fa2/pone.0183066.g001.jpg

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