TY - JOUR
T1 - Environmental biodiversity, human microbiota, and allergy are interrelated
AU - Hanski, Ilkka
AU - von Hertzen, Leena
AU - Fyhrquist, Nanna
AU - Koskinen, Kaisa
AU - Torppa, Kaisa
AU - Laatikainen, Tiina
AU - Karisola, Piia
AU - Auvinen, Petri
AU - Paulin, Lars
AU - Makela, Mika J.
AU - Vartiainen, Erkki
AU - Kosunen, Timo U.
AU - Alenius, Harri
AU - Haahtela, Tari
PY - 2012
Y1 - 2012
N2 - Rapidly declining biodiversity may be a contributing factor to another global megatrend-the rapidly increasing prevalence of allergies and other chronic inflammatory diseases among urban populations worldwide. According to the "biodiversity hypothesis," reduced contact of people with natural environmental features and biodiversity may adversely affect the human commensal microbiota and its immunomodulatory capacity. Analyzing atopic sensitization (i.e., allergic disposition) in a random sample of adolescents living in a heterogeneous region of 100 x 150 km, we show that environmental biodiversity in the surroundings of the study subjects' homes influenced the composition of the bacterial classes on their skin. Compared with healthy individuals, atopic individuals had lower environmental biodiversity in the surroundings of their homes and significantly lower generic diversity of gammaproteobacteria on their skin. The functional role of the Gram-negative gammaproteobacteria is supported by in vitro measurements of expression of IL-10, a key anti-inflammatory cytokine in immunologic tolerance, in peripheral blood mononuclear cells. In healthy, but not in atopic, individuals, IL-10 expression was positively correlated with the abundance of the gammaproteobacterial genus Acinetobacter on the skin. These results raise fundamental questions about the consequences of biodiversity loss for both allergic conditions and public health in general.
AB - Rapidly declining biodiversity may be a contributing factor to another global megatrend-the rapidly increasing prevalence of allergies and other chronic inflammatory diseases among urban populations worldwide. According to the "biodiversity hypothesis," reduced contact of people with natural environmental features and biodiversity may adversely affect the human commensal microbiota and its immunomodulatory capacity. Analyzing atopic sensitization (i.e., allergic disposition) in a random sample of adolescents living in a heterogeneous region of 100 x 150 km, we show that environmental biodiversity in the surroundings of the study subjects' homes influenced the composition of the bacterial classes on their skin. Compared with healthy individuals, atopic individuals had lower environmental biodiversity in the surroundings of their homes and significantly lower generic diversity of gammaproteobacteria on their skin. The functional role of the Gram-negative gammaproteobacteria is supported by in vitro measurements of expression of IL-10, a key anti-inflammatory cytokine in immunologic tolerance, in peripheral blood mononuclear cells. In healthy, but not in atopic, individuals, IL-10 expression was positively correlated with the abundance of the gammaproteobacterial genus Acinetobacter on the skin. These results raise fundamental questions about the consequences of biodiversity loss for both allergic conditions and public health in general.
KW - biodiversity benefits
KW - hygiene hypothesis
KW - microbial deprivation
KW - civilization diseases
KW - biodiversity benefits
KW - hygiene hypothesis
KW - microbial deprivation
KW - civilization diseases
UR - https://res.slu.se/id/publ/84987
U2 - 10.1073/pnas.1205624109
DO - 10.1073/pnas.1205624109
M3 - Journal article
C2 - 22566627
SN - 0027-8424
VL - 109
SP - 8334
EP - 8339
JO - Proceedings of the National Academy of Sciences of the United States of America
JF - Proceedings of the National Academy of Sciences of the United States of America
IS - 21
ER -