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Variability in Microbial Communities Driven by Particulate Matter on Human Facial Skin.

Kai Fu | Qixing Zhou | Heli Wang
Toxics | 2024

Microbial communities are known to play an important role in maintaining ecological balance and can be used as an indicator for assessing environmental pollution. Numerous studies have revealed that air pollution can alter the structure of microbial communities, which may increase health risks. Nevertheless, the relationships between microbial communities and particulate matter (PM) caused by air pollution in terms of health risk assessment are not well understood. This study aimed to validate the influences of PM chemical compositions on microbial communities and assess the associated health risks. Our results, based on similarity analysis, revealed that the stability structure of the microbial communities had a similarity greater than 73%. In addition, the altered richness and diversity of microbial communities were significantly associated with PM chemical compositions. Volatile organic compounds (VOCs) and polycyclic aromatic hydrocarbons (PAHs) exerted a positive influence on microbial communities in different environmental variables. Additionally, a stronger linear correlation was observed between hydroxyl radicals (·OH) and the richness of microbial communities. All estimated health risks from PM chemical compositions, calculated under different environmental variables, significantly exceeded the acceptable level by a factor of more than 49. Cr and 1,2-Dibromoethane displayed dual adverse effects of non-carcinogenic and carcinogenic risks. Overall, the study provides insights into the fundamental mechanisms of the variability in microbial communities driven by PM, which may support the crucial role of PM chemical compositions in the risk of microorganisms in the atmospheric environment.

Pubmed ID: 39058149

Research resources used in this publication

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Antibodies used in this publication

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Associated grants

  • Agency: National Natural Science Foundation of China (NSFC) as a Shandong-NSFC joint project,
    Id: U1906222
  • Agency: Ministry of Science and Technology of the People's Republic of China as a key technology research and development program project,
    Id: 2019YFC1804104
  • Agency: Tianjin Science and Technology Bureau as a key science and technology supporting project,
    Id: S19ZC60133

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Promega (tool)

RRID:SCR_006724

An Antibody supplier

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mothur (tool)

RRID:SCR_011947

An open-source software package for describing and comparing microbial communities. It incorporates the functionality of a number of computational tools, calculators, and visualization tools.

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