Advanced search
1 file | 2.64 MB Add to list

The influence of lifestyle and environmental factors on host resilience through a homeostatic skin microbiota : an EAACI Task Force Report

(2024) ALLERGY. 79(12). p.3269-3284
Author
Organization
Abstract
Human skin is colonized with skin microbiota that includes commensal bacteria, fungi, arthropods, archaea and viruses. The composition of the microbiota varies at different anatomical locations according to changes in body temperature, pH, humidity/hydration or sebum content. A homeostatic skin microbiota is crucial to maintain epithelial barrier functions, to protect from invading pathogens and to interact with the immune system. Therefore, maintaining homeostasis holds promise to be an achievable goal for microbiome-directed treatment strategies as well as a prophylactic strategy to prevent the development of skin diseases, as dysbiosis or disruption of homeostatic skin microbiota is associated with skin inflammation. A healthy skin microbiome is likely modulated by genetic as well as environmental and lifestyle factors. In this review, we aim to provide a complete overview of the lifestyle and environmental factors that can contribute to maintaining the skin microbiome healthy. Awareness of these factors could be the basis for a prophylactic strategy to prevent the development of skin diseases or to be used as a therapeutic approach.
Keywords
environment, homeostasis, lifestyle, microbiome, skin, ATOPIC-DERMATITIS, HAY-FEVER, ULTRAVIOLET-IRRADIATION, CUTANEOUS MICROBIOTA, ALLERGIC DISEASES, WATER HARDNESS, FOOD ALLERGY, DOUBLE-BLIND, ASTHMA, CHILDREN

Downloads

  • Allergy - 2024 - Kortekaas Krohn - The influence of lifestyle and environmental factors on host resilience.pdf
    • full text (Published version)
    • |
    • open access
    • |
    • PDF
    • |
    • 2.64 MB

Citation

Please use this url to cite or link to this publication:

MLA
Kortekaas Krohn, Inge, et al. “The Influence of Lifestyle and Environmental Factors on Host Resilience through a Homeostatic Skin Microbiota : An EAACI Task Force Report.” ALLERGY, vol. 79, no. 12, 2024, pp. 3269–84, doi:10.1111/all.16378.
APA
Kortekaas Krohn, I., Callewaert, C., Belasri, H., De Pessemier, B., Diez Lopez, C., Mortz, C. G., … Gomez‐Casado, C. (2024). The influence of lifestyle and environmental factors on host resilience through a homeostatic skin microbiota : an EAACI Task Force Report. ALLERGY, 79(12), 3269–3284. https://doi.org/10.1111/all.16378
Chicago author-date
Kortekaas Krohn, Inge, Chris Callewaert, Hafsa Belasri, Britta De Pessemier, Celia Diez Lopez, Charlotte G. Mortz, Liam O’Mahony, et al. 2024. “The Influence of Lifestyle and Environmental Factors on Host Resilience through a Homeostatic Skin Microbiota : An EAACI Task Force Report.” ALLERGY 79 (12): 3269–84. https://doi.org/10.1111/all.16378.
Chicago author-date (all authors)
Kortekaas Krohn, Inge, Chris Callewaert, Hafsa Belasri, Britta De Pessemier, Celia Diez Lopez, Charlotte G. Mortz, Liam O’Mahony, Marina Pérez‐Gordo, Milena Sokolowska, Zsofia Unger, Eva Untersmayr, Bernhard Homey, and Cristina Gomez‐Casado. 2024. “The Influence of Lifestyle and Environmental Factors on Host Resilience through a Homeostatic Skin Microbiota : An EAACI Task Force Report.” ALLERGY 79 (12): 3269–3284. doi:10.1111/all.16378.
Vancouver
1.
Kortekaas Krohn I, Callewaert C, Belasri H, De Pessemier B, Diez Lopez C, Mortz CG, et al. The influence of lifestyle and environmental factors on host resilience through a homeostatic skin microbiota : an EAACI Task Force Report. ALLERGY. 2024;79(12):3269–84.
IEEE
[1]
I. Kortekaas Krohn et al., “The influence of lifestyle and environmental factors on host resilience through a homeostatic skin microbiota : an EAACI Task Force Report,” ALLERGY, vol. 79, no. 12, pp. 3269–3284, 2024.
@article{01JM7S0NK1E54XF9EJF2TQKQDZ,
  abstract     = {{Human skin is colonized with skin microbiota that includes commensal bacteria, fungi, arthropods, archaea and viruses. The composition of the microbiota varies at different anatomical locations according to changes in body temperature, pH, humidity/hydration or sebum content. A homeostatic skin microbiota is crucial to maintain epithelial barrier functions, to protect from invading pathogens and to interact with the immune system. Therefore, maintaining homeostasis holds promise to be an achievable goal for microbiome-directed treatment strategies as well as a prophylactic strategy to prevent the development of skin diseases, as dysbiosis or disruption of homeostatic skin microbiota is associated with skin inflammation. A healthy skin microbiome is likely modulated by genetic as well as environmental and lifestyle factors. In this review, we aim to provide a complete overview of the lifestyle and environmental factors that can contribute to maintaining the skin microbiome healthy. Awareness of these factors could be the basis for a prophylactic strategy to prevent the development of skin diseases or to be used as a therapeutic approach.}},
  author       = {{Kortekaas Krohn, Inge and Callewaert, Chris and Belasri, Hafsa and De Pessemier, Britta and Diez Lopez, Celia and Mortz, Charlotte G. and O'Mahony, Liam and Pérez‐Gordo, Marina and Sokolowska, Milena and Unger, Zsofia and Untersmayr, Eva and Homey, Bernhard and Gomez‐Casado, Cristina}},
  issn         = {{0105-4538}},
  journal      = {{ALLERGY}},
  keywords     = {{environment,homeostasis,lifestyle,microbiome,skin,ATOPIC-DERMATITIS,HAY-FEVER,ULTRAVIOLET-IRRADIATION,CUTANEOUS MICROBIOTA,ALLERGIC DISEASES,WATER HARDNESS,FOOD ALLERGY,DOUBLE-BLIND,ASTHMA,CHILDREN}},
  language     = {{eng}},
  number       = {{12}},
  pages        = {{3269--3284}},
  title        = {{The influence of lifestyle and environmental factors on host resilience through a homeostatic skin microbiota : an EAACI Task Force Report}},
  url          = {{http://doi.org/10.1111/all.16378}},
  volume       = {{79}},
  year         = {{2024}},
}

Altmetric
View in Altmetric
Web of Science
Times cited: