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挥发性化合物与健康和疾病。

Volatile compounds in health and disease.

机构信息

J. Heyrovský Institute of Physical Chemistry, Academy of Sciences of the Czech Republic, Prague, Czech Republic.

出版信息

Curr Opin Clin Nutr Metab Care. 2011 Sep;14(5):455-60. doi: 10.1097/MCO.0b013e3283490280.

Abstract

PURPOSE OF REVIEW

To summarize the recent progress made in noninvasive monitoring of volatile compounds in exhaled breath and above biological liquids, as they are becoming increasingly important in assessing the nutritional and clinical status and beginning to provide support to conventional clinical diagnostics and therapy. To indicate the potential of these developments in medicine and the specific areas which are currently under investigation.

RECENT FINDINGS

The significance of the following breath gases and their concentrations are reported: acetone and the influence of diet; ammonia confirmed as an indicator of dialysis efficacy; hydrogen and the (13)CO(2)/(12)CO(2) ratio (following the ingestion of (13)C-labeled compounds) as related to gastric emptying and bowel transit times; hydrogen cyanide released by Pseudomonas and its detection in breath of children with cystic fibrosis; and multiple trace compounds in breath of patients with specific pathophysiological conditions and 'metabolic profiling'.

SUMMARY

Advanced analytical methods, especially exploiting mass spectrometry, are moving breath analysis towards the clinical setting; some trace gas metabolites are already being exploited in diagnosis and therapy. Much effort is being given to the search for biomarkers of tumours in the body. HCN as an indicator of the presence of Pseudomonas in the airways has real potential in therapeutically alleviating the symptoms of cystic fibrosis.

摘要

目的综述

总结近年来在非侵入性监测呼出气及以上生物液体中的挥发性化合物方面取得的进展,因为这些进展在评估营养和临床状况方面变得越来越重要,并开始为传统的临床诊断和治疗提供支持。指出这些在医学中的发展潜力和当前正在研究的具体领域。

最近的发现

报告了以下呼出气及其浓度的重要性:丙酮和饮食的影响;氨被证实是透析效果的指标;氢和(13)CO(2)/(12)CO(2)比(在摄入(13)C 标记化合物后)与胃排空和肠转运时间有关;假单胞菌释放的氰化氢及其在囊性纤维化儿童呼吸中的检测;以及特定病理生理条件和“代谢谱”患者呼吸中的多种痕量化合物。

总结

先进的分析方法,特别是利用质谱,正在将呼吸分析推向临床应用;一些痕量气体代谢物已经在诊断和治疗中得到了应用。人们正在努力寻找体内肿瘤的生物标志物。HCN 作为气道中假单胞菌存在的指标,在治疗上缓解囊性纤维化的症状方面具有真正的潜力。

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