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1National Collection of Industrial Microorganisms (NCIM), CSIR-National Chemical Laboratory, Pashan Road, Pune, MH, 411,008, India.
Abstract:
Between 150 and 200 species of plants, insects, birds or mammals go extinct every day. We do not have any idea what the global extinction rate for microorganisms is. What is clear is that we have already lost a maximum number of the microbes that used to live in and on our skins. Many of our microbial partners are facing extinction as we apply selection pressures that are unprecedented in our long-standing relationships. Recent estimates are that we have lost at least one third of the diversity of our skin microbiome. Every day, most of us bath or shower in water that contains chlorine or fluorine; these additives do a great job of killing pathogenic microbes, but they are probably not helping our skin microbiome. Most of the people apply cosmetic products every day, as these products contain preservatives that prevent microbial growth on the shelf. These same chemicals may well kill microbes on the skin. The daily use of high-pH soaps probably will not help microbial life that is adapted to living on the skin's natural pH of 5. The rise in the rate of C-section births from around 5% in 1970 to more than 30% today is likely to be a contributing factor. Vaginal microbes seed our skins at birth and C-sections disrupt this process. The overuse of broad-spectrum antibiotics has contributed to the loss of our microbial partners in all body sites and the skin is no exception. It is now clear that skin is an ecosystem that is dependent on commensal microbes for optimal health. In general, a diverse ecosystem is a healthy ecosystem that is robust in the face of change. Low-diversity ecosystems are more fragile and susceptible to dysbiosis. Eczema and acne rates have increased rapidly over the last 50 years. These diseases are almost unknown in hunter-gatherer communities. Now, we face two exciting challenges: finding out which species matter and how to get them back.
Insights
Our skin microbiome is rapidly losing diversity due to modern hygiene and medical practices. This loss of essential microbes may be linked to increased skin conditions like eczema and acne.
Area of Science:
- Microbiology
- Ecology
- Dermatology
Background:
- Human skin hosts a complex ecosystem of commensal microbes crucial for health.
- Modern lifestyles, including hygiene practices and medical interventions, are exerting unprecedented selection pressures on this microbiome.
- Significant loss of skin microbial diversity has occurred, with estimates suggesting at least one-third of the skin microbiome diversity has been lost.
Purpose of the Study:
- To highlight the alarming decline in human skin microbiome diversity.
- To identify key factors contributing to this loss.
- To underscore the link between microbiome health and skin conditions.
Main Methods:
- The study is a review and synthesis of existing research on the skin microbiome.
- It analyzes the impact of common hygiene products (chlorine, fluorine, preservatives), soaps, birth methods (C-sections), and antibiotic use.
- It discusses the ecological principles of ecosystem diversity and its relation to health and disease.
Main Results:
- Daily exposure to chlorinated/fluorinated water, cosmetic preservatives, and high-pH soaps negatively impacts skin microbes.
- Increased C-section rates disrupt the natural seeding of skin microbes at birth.
- Broad-spectrum antibiotic overuse further depletes microbial partners across all body sites, including the skin.
Conclusions:
- The human skin is an ecosystem dependent on commensal microbes for optimal health.
- Reduced microbial diversity makes the skin ecosystem more fragile and susceptible to dysbiosis, potentially leading to conditions like eczema and acne.
- Future research should focus on identifying crucial microbial species and developing strategies for microbiome restoration.
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