短期使用FFP2 (N95)面罩对年轻健康志愿者唾液代谢组的影响:一项初步研究

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC ACS Applied Electronic Materials Pub Date : 2023-01-21 DOI:10.1039/D2MO00232A
Sk Ramiz Islam, Debasish Prusty, Subhadip Maiti, Raju Dutta, Partha Chattopadhyay and Soumen Kanti Manna
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引用次数: 1

摘要

在大流行后时代,使用口罩已成为公共生活不可或缺的一部分。然而,对戴口罩对生理的影响的了解仍然不完整,这是为公共卫生政策提供信息所必需的。我们首次报道了佩戴FFP2口罩对唾液代谢成分(呼吸的近端基质)以及心肺参数的影响。采集年轻(31.2±6.3岁)健康志愿者(n = 10)在佩戴FFP2 (N95)口罩30分钟前后的非诱导唾液,采用GCMS进行分析。结果显示,短期使用口罩不会导致心率、脉搏率或SpO2发生任何显著变化。使用三种独立的数据归一化方法来分析代谢组学特征的变化。总体唾液代谢型的个体性发现不受口罩使用的影响。然而,无论采用何种数据归一化方法,唾液中L- focal、5-氨基戊酸、腐胺和苯绿酸的丰度都有增加的趋势。定量分析证实,在高度个体间差异的情况下,配对样本唾液中这些代谢物的浓度增加。结果显示,虽然测量的生理参数和个体唾液代谢类型没有显著变化,但口罩的使用与这些代谢物的相关变化有关,这些变化可能源于微生物代谢活性的改变。这些结果也可以解释与使用口罩有关的气味感知的变化。这些变化对粘膜健康和免疫的潜在影响值得进一步研究,以制定更谨慎的口罩使用政策。
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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Effect of short-term use of FFP2 (N95) masks on the salivary metabolome of young healthy volunteers: a pilot study†

The use of face masks has become an integral part of public life in the post-pandemic era. However, the understanding of the effect of wearing masks on physiology remains incomplete and is required for informing public health policies. For the first time, we report the effects of wearing FFP2 masks on the metabolic composition of saliva, a proximal matrix to breath, along with cardiopulmonary parameters. Un-induced saliva was collected from young (31.2 ± 6.3 years) healthy volunteers (n = 10) before and after wearing FFP2 (N95) masks for 30 minutes and analyzed using GCMS. The results showed that such short-term mask use did not cause any significant change in heart rate, pulse rate or SpO2. Three independent data normalization approaches were used to analyze the changes in metabolomic signature. The individuality of the overall salivary metabotype was found to be unaffected by mask use. However, a trend of an increase in the salivary abundance of L-fucose, 5-aminovaleric acid, putrescine and phloretic acid was indicated irrespective of the method of data normalization. Quantitative analysis confirmed increases in concentrations of these metabolites in saliva of paired samples amid high inter-individual variability. The results showed that while there was no significant change in measured physiological parameters and individual salivary metabotypes, mask use was associated with correlated changes in these metabolites plausibly originating from altered microbial metabolic activity. These results might also explain the change in odour perception reported to be associated with mask use. Potential implications of these changes on mucosal health and immunity warrants further investigation to evolve more prudent mask use policies.

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来源期刊
CiteScore
7.20
自引率
4.30%
发文量
567
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