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Emerging mechanisms of microplastic-induced skin diseases: a perspective from the gut-skin axis
Xueer Zhang1,2, Pai Zheng1, Mingxiao Yang1
1Department of Dermatology, Chengdu University of Traditional Chinese Medicine, Chengdu, 6610075, People's Republic of China.
Abstract:
Microplastics (MPs), ubiquitous environmental pollutants, can enter the human body through ingestion, inhalation, and dermal contact, accumulate in various organs, and exert harmful effects. Emerging evidence suggests that both the skin and the gut serve as key immunological and neuroendocrine organs, sharing structural and neuroanatomical similarities. The interaction between these two systems is referred to as the "gut-skin axis." Numerous studies have demonstrated that MPs not only induce gut microbiota dysbiosis and compromise intestinal barrier integrity but also impair skin barrier function. Thus, the gut-skin axis offers a novel perspective for understanding MP-induced toxicity. Although interactions between MPs and the gut-skin axis have garnered increasing scientific interest, the mechanistic understanding of how MPs may mediate crosstalk between the gut and skin remains limited, and the impact of MPs on skin damage is not yet fully elucidated. MPs can directly disrupt gut microbial homeostasis and epithelial barrier function, allowing harmful bacteria and microbial metabolites to translocate into the bloodstream and exert systemic effects, ultimately contributing to cutaneous inflammation, metabolic imbalance, and oxidative stress. This review summarizes the mechanisms by which MPs exposure induces gut microbiota dysbiosis and skin damage from an integrated gut-skin axis perspective, highlighting their interplay's relevance. Understanding changes in gut microbiota and its metabolites may represent a promising approach to mitigate MP-induced skin diseases via modulation of the gut-skin axis.
Insights
Microplastics (MPs) disrupt the gut microbiome and skin barrier, impacting the gut-skin axis. Targeting gut microbiota may offer a way to reduce MP-induced skin damage.
Area of Science:
- Environmental Science
- Toxicology
- Immunology
Background:
- Microplastics (MPs) are pervasive pollutants entering the human body via multiple routes.
- The gut-skin axis, a bidirectional communication pathway, links the gastrointestinal and integumentary systems.
- MPs are known to disrupt gut microbiota and intestinal barrier function, and impair skin health.
Purpose of the Study:
- To review the mechanisms by which microplastic exposure induces gut microbiota dysbiosis and skin damage.
- To explore the role of the gut-skin axis in mediating microplastic toxicity.
- To highlight the interplay between gut and skin health in the context of microplastic exposure.
Main Methods:
- Literature review of studies investigating microplastic effects on gut microbiota and skin.
- Analysis of mechanisms underlying microplastic-induced gut dysbiosis and skin barrier impairment.
- Integration of findings from the perspective of the gut-skin axis.
Main Results:
- Microplastic exposure causes gut microbiota dysbiosis and compromises intestinal barrier integrity.
- Microplastics can impair skin barrier function, leading to inflammation, metabolic imbalance, and oxidative stress.
- Translocation of gut bacteria and metabolites into circulation contributes to systemic effects, including skin damage.
Conclusions:
- The gut-skin axis provides a crucial framework for understanding microplastic-induced toxicity.
- Microplastic-induced gut dysbiosis and barrier dysfunction can lead to or exacerbate skin conditions.
- Modulating gut microbiota may be a viable strategy to mitigate microplastic-related skin diseases.
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