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负氧离子对人体健康的生物学效应及综合多组学鉴定生物标志物的研究进展:文献综述

Biological effects of negative air ions on human health and integrated multiomics to identify biomarkers: a literature review.

机构信息

International School of Public Health and One Health, Heinz Mehlhorn Academician Workstation, Hainan Medical University, Haikou, 571199, China.

Department of Toxicology, School of Public Health, China Medical University, Shenyang, 110122, China.

出版信息

Environ Sci Pollut Res Int. 2023 Jun;30(27):69824-69836. doi: 10.1007/s11356-023-27133-8. Epub 2023 May 12.

Abstract

Environmental pollution seriously affects human health. The concentration of negative air ions (NAIs), which were discovered at the end of the nineteenth century, is one of the factors used to evaluate air quality. Additionally, NAIs have been widely considered markers by scholars due to their unique biological function. The aim of this study was to summarize existing research and propose future research on the generation and temporal and spatial dynamic patterns of NAIs concentrations as well as the relationship between NAIs and human health. We identified 187 studies (published January 2013-January 2023) that met our inclusion criteria. Fourteen English studies evaluated the effects of NAIs on depression, the cardiovascular system, the respiratory system, reproduction and development, cognition, and sports muscle injury. Only two studies reported the associations of NAIs exposure with metabolic omics. NAIs concentrations vary temporally with solar radiation, air temperature, and relative humidity, while the temporal dynamic patterns of NAIs are affected by season, time, meteorological factors, air quality index, geographical location, forest vegetation, and other factors. Researchers have shown that exposure to NAIs may benefit our health by changing amino acid metabolism, which mainly manifests as increased anti-inflammation and reduced inflammation and antioxidation. Furthermore, exposure to NAIs promotes energy production, affects the expression of c-fos, and regulates 5-HT levels. There has been considerable interest in the potential effects of NAIs on human health and well-being, but the conclusions have been inconsistent and the mechanisms remain unclear. The use of omics to elucidate the biological mechanism of NAIs is relatively new and has some advantages.

摘要

环境污染严重影响人类健康。负氧离子(NAIs)浓度是评估空气质量的因素之一,它于 19 世纪末被发现,此外,由于其独特的生物学功能,NAIs 一直被学者广泛认为是标志物。本研究旨在总结现有的研究成果,并提出未来关于 NAI 浓度的产生和时空动态模式以及 NAI 与人类健康之间关系的研究方向。我们确定了 187 项符合纳入标准的研究(发表于 2013 年 1 月至 2023 年 1 月)。其中 14 项英文研究评估了 NAI 对抑郁、心血管系统、呼吸系统、生殖发育、认知和运动肌肉损伤的影响。仅有两项研究报告了 NAI 暴露与代谢组学之间的关联。NAIs 浓度随太阳辐射、空气温度和相对湿度的变化而变化,而 NAI 的时间动态模式受季节、时间、气象因素、空气质量指数、地理位置、森林植被等因素的影响。研究人员表明,通过改变氨基酸代谢,暴露于 NAI 可能有益于我们的健康,主要表现为增加抗炎作用和减少炎症及抗氧化作用。此外,暴露于 NAI 可促进能量产生,影响 c-fos 的表达,并调节 5-HT 水平。NAIs 对人类健康和幸福的潜在影响引起了广泛关注,但结论不一致,其机制尚不清楚。利用组学阐明 NAI 的生物学机制是相对较新的,具有一定的优势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fa57/10239379/541f4bf07d4c/11356_2023_27133_Fig1_HTML.jpg

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