Association of breast milk-derived arachidonic acid-induced infant gut dysbiosis with the onset of atopic dermatitis

Author:

Jiang Suhua,Cai Mengyun,Li Dingru,Chen Xiangping,Chen Xiaoqian,Huang Qitao,Zhong Caimei,Zheng Xiufeng,Zhou Dan,Chen Zhiyan,Zhang Lin,Ching Jessica YL,Chen Ailing,Lu Shaoxia,Zhang Lifang,Hu Ling,Liao Yan,Li Ying,He Zhihua,Wu Jingjing,Huo Huiyi,Liang Yongqi,Li Wanwen,Zou Yanli,Luo WeiORCID,Ng Siew CORCID,Chan Francis KLORCID,Chen XiaORCID,Deng Yuhua

Abstract

ObjectiveThe specific breast milk-derived metabolites that mediate host–microbiota interactions and contribute to the onset of atopic dermatitis (AD) remain unknown and require further investigation.DesignWe enrolled 250 mother–infant pairs and collected 978 longitudinal faecal samples from infants from birth to 6 months of age, along with 243 maternal faecal samples for metagenomics. Concurrently, 239 corresponding breast milk samples were analysed for metabolomics. Animal and cellular experiments were conducted to validate the bioinformatics findings.ResultsThe clinical findings suggested that a decrease in daily breastfeeding duration was associated with a reduced incidence of AD. This observation inspired us to investigate the effects of breast milk-derived fatty acids. We found that high concentrations of arachidonic acid (AA), but not eicosapentaenoic acid (EPA) or docosahexaenoic acid, induced gut dysbiosis in infants. Further investigation revealed that four specific bacteria degraded mannan into mannose, consequently enhancing the mannan-dependent biosynthesis of O-antigen and lipopolysaccharide. Correlation analysis confirmed that in infants with AD, the abundance ofEscherichia coliunder high AA concentrations was positively correlated with some microbial pathways (eg, ‘GDP-mannose-derived O-antigen and lipopolysaccharide biosynthesis’). These findings are consistent with those of the animal studies. Additionally, AA, but not EPA, disrupted the ratio of CD4/CD8 cells, increased skin lesion area and enhanced the proportion of peripheral Th2 cells. It also promoted IgE secretion and the biosynthesis of prostaglandins and leukotrienes in BALB/c mice fed AA following ovalbumin immunostimulation. Moreover, AA significantly increased IL-4 secretion in HaCaT cells costimulated with TNF-α and INF-γ.ConclusionsThis study demonstrates that AA is intimately linked to the onset of AD via gut dysbiosis.

Funder

Foshan Science and Technology Bureau

Basic and Applied Basic Research Foundation of Guangdong Province

The Basic and Applied Basic Research Foundation of GuangDong Province

Publisher

BMJ

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