Evaluation of Sweat-Sampling Procedures for Human Stress-Biomarker Detection

Analytica Pub Date : 2022-04-16 DOI:10.3390/analytica3020013
M. J. Nunes, José J. G. Moura, J. Noronha, L. C. Branco, A. Samhan-Arias, João P. Sousa, C. Rouco, C. Cordas
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引用次数: 1

Abstract

Sweat is a potential biological fluid for the non-invasive analytical assessment of diverse molecules, including biomarkers. Notwithstanding, the sampling methodology is critical, and it must be assessed prior to using sweat for clinical diagnosis. In the current work, the analytical methodology was further developed taking into account the sampling step, in view of the identification and level variations of sweat components that have potential to be stress biomarkers using separation by liquid chromatography and detection by tandem mass spectrometry, in order to attain a screening profile of 26 molecules in just one stage. As such, the molecule identification was used as a test for the evaluation of the sampling procedures, including the location on the body, using patches for long-term sampling and vials for direct sampling, through a qualitative approach. From this evaluation it was possible to conclude that the sampling may be performed on the chest or back skin. Additionally, possible interference was evaluated. The long-term sampling with patches can be used under both rest and exercise conditions with variation of the detected molecule’s levels. The direct sampling, using vials, has the advantage of not having interferences but the disadvantage of only being effective after exercise in order to have enough sample for sweat analysis.
人类压力生物标记物检测的汗液取样程序评价
汗液是一种潜在的生物液体,可用于多种分子(包括生物标志物)的非侵入性分析评估。尽管如此,抽样方法是至关重要的,必须在使用汗液进行临床诊断之前进行评估。在目前的工作中,考虑到有可能成为应激生物标志物的汗液成分的鉴定和水平变化,在采样步骤中进一步发展了分析方法,使用液相色谱分离和串联质谱检测,以便在一个阶段获得26个分子的筛选概况。因此,通过定性方法,分子鉴定被用作评估采样程序的测试,包括在身体上的位置,使用贴片进行长期采样,使用小瓶进行直接采样。从这个评估可以得出结论,取样可能是在胸部或背部皮肤上进行的。此外,还对可能的干扰进行了评估。贴片长期取样可以在休息和运动条件下使用,检测到的分子水平会发生变化。使用小瓶直接取样的优点是没有干扰,缺点是只有在运动后才有效,以便有足够的样本进行汗液分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
1.80
自引率
0.00%
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