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代谢组学在儿童哮喘中的应用:预测、诊断与个性化治疗

Application of Metabolomics in Pediatric Asthma: Prediction, Diagnosis and Personalized Treatment.

作者信息

Papamichael Maria Michelle, Katsardis Charis, Sarandi Evangelia, Georgaki Spyridoula, Frima Eirini-Sofia, Varvarigou Anastasia, Tsoukalas Dimitris

机构信息

Department of Dietetics, Human Nutrition & Sport, School of Allied Health, Human Services & Sport, La Trobe University, Melbourne 3086, Australia.

European Institute of Nutritional Medicine, 00198 Rome, Italy.

出版信息

Metabolites. 2021 Apr 18;11(4):251. doi: 10.3390/metabo11040251.

Abstract

Asthma in children remains a significant public health challenge affecting 5-20% of children in Europe and is associated with increased morbidity and societal healthcare costs. The high variation in asthma incidence among countries may be attributed to differences in genetic susceptibility and environmental factors. This respiratory disorder is described as a heterogeneous syndrome of multiple clinical manifestations (phenotypes) with varying degrees of severity and airway hyper-responsiveness, which is based on patient symptoms, lung function and response to pharmacotherapy. However, an accurate diagnosis is often difficult due to diversities in clinical presentation. Therefore, identifying early diagnostic biomarkers and improving the monitoring of airway dysfunction and inflammatory through non-invasive methods are key goals in successful pediatric asthma management. Given that asthma is caused by the interaction between genes and environmental factors, an emerging approach, metabolomics-the systematic analysis of small molecules-can provide more insight into asthma pathophysiological mechanisms, enable the identification of early biomarkers and targeted personalized therapies, thus reducing disease burden and societal cost. The purpose of this review is to present evidence on the utility of metabolomics in pediatric asthma through the analysis of intermediate metabolites of biochemical pathways that involve carbohydrates, amino acids, lipids, organic acids and nucleotides and discuss their potential application in clinical practice. Also, current challenges on the integration of metabolomics in pediatric asthma management and needed next steps are critically discussed.

摘要

儿童哮喘仍然是一项重大的公共卫生挑战,影响着欧洲5%至20%的儿童,并与发病率上升及社会医疗成本增加相关。各国哮喘发病率的巨大差异可能归因于遗传易感性和环境因素的不同。这种呼吸系统疾病被描述为一种具有多种临床表现(表型)的异质性综合征,其严重程度和气道高反应性各不相同,这是基于患者症状、肺功能及对药物治疗的反应来判断的。然而,由于临床表现的多样性,准确诊断往往很困难。因此,识别早期诊断生物标志物并通过非侵入性方法改善对气道功能障碍和炎症的监测是成功管理儿童哮喘的关键目标。鉴于哮喘是由基因与环境因素相互作用引起的,一种新兴方法——代谢组学(对小分子进行系统分析)——可以更深入地了解哮喘的病理生理机制,有助于识别早期生物标志物和靶向个性化治疗,从而减轻疾病负担和社会成本。本综述的目的是通过分析涉及碳水化合物、氨基酸、脂质、有机酸和核苷酸的生化途径的中间代谢物,展示代谢组学在儿童哮喘中的应用证据,并讨论其在临床实践中的潜在应用。此外,还对代谢组学整合到儿童哮喘管理中的当前挑战及所需的后续步骤进行了批判性讨论。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/559b/8072856/f8ba4319d110/metabolites-11-00251-g001.jpg

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