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Clinical applications of volatilomic assays

呼出气冷凝液 气体分析呼吸 计算生物学 采样(信号处理) 暴露的 血液取样 代谢组学 生理学 医学 生化工程 计算机科学 生物 重症监护医学 生物信息学 病理 化学 免疫学 色谱法 内科学 滤波器(信号处理) 工程类 哮喘 计算机视觉
作者
Rosamaria Capuano,Marco Ciotti,Alexandro Catini,Sergio Bernardini,Corrado Di Natale
出处
期刊:Critical Reviews in Clinical Laboratory Sciences [Informa]
卷期号:62 (1): 45-64 被引量:5
标识
DOI:10.1080/10408363.2024.2387038
摘要

The study of metabolomics is revealing immense potential for diagnosis, therapy monitoring, and understanding of pathogenesis processes. Volatilomics is a subcategory of metabolomics interested in the detection of molecules that are small enough to be released in the gas phase. Volatile compounds produced by cellular processes are released into the blood and lymph, and can reach the external environment through different pathways, such as the blood-air interface in the lung that are detected in breath, or the blood-water interface in the kidney that leads to volatile compounds detected in urine. Besides breath and urine, additional sources of volatile compounds such as saliva, blood, feces, and skin are available. Volatilomics traces its roots back over fifty years to the pioneering investigations in the 1970s. Despite extensive research, the field remains in its infancy, hindered by a lack of standardization despite ample experimental evidence. The proliferation of analytical instrumentations, sample preparations and methods of volatilome sampling still make it difficult to compare results from different studies and to establish a common standard approach to volatilomics. This review aims to provide an overview of volatilomics' diagnostic potential, focusing on two key technical aspects: sampling and analysis. Sampling poses a challenge due to the susceptibility of human samples to contamination and confounding factors from various sources like the environment and lifestyle. The discussion then delves into targeted and untargeted approaches in volatilomics. Some case studies are presented to exemplify the results obtained so far. Finally, the review concludes with a discussion on the necessary steps to fully integrate volatilomics into clinical practice.
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