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Onderdonk, Andrew

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Onderdonk

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Andrew

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Onderdonk, Andrew

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Now showing 1 - 3 of 3
  • Publication

    Mode of Delivery and Cord Blood Cytokines: A Birth Cohort Study

    (BioMed Central, 2006) Ly, Ngoc P; Ruiz-Pérez, Begoña; Tzianabos, Arthur O; Liang, Catherine; Laskey, Daniel; DuBois, Andrea M; Levy, Hara; Celedón, Juan C; Onderdonk, Andrew; Litonjua, Augusto A.; Delaney, Mary; Gold, Diane; Ryan, Louise; Weiss, Scott

    Background: The mechanisms for the association between birth by cesarean section and atopy and asthma are largely unknown. Objective: To examine whether cesarean section results in neonatal secretion of cytokines that are associated with increased risk of atopy and/or asthma in childhood. To examine whether the association between mode of delivery and neonatal immune responses is explained by exposure to the maternal gut flora (a marker of the vaginal flora). Methods: CBMCs were isolated from 37 neonates at delivery, and secretion of IL-13, IFN-γ, and IL-10 (at baseline and after stimulation with antigens [dust mite and cat dander allergens, phytohemagglutinin, and lipopolysaccharide]) was quantified by ELISA. Total and specific microbes were quantified in maternal stool. The relation between mode of delivery and cord blood cytokines was examined by linear regression. The relation between maternal stool microbes and cord blood cytokines was examined by Spearman's correlation coefficients. Results: Cesarean section was associated with increased levels of IL-13 and IFN-γ. In multivariate analyses, cesarean section was associated with an increment of 79.4 pg/ml in secretion of IL-13 by CBMCs after stimulation with dust mite allergen (P < 0.001). Among children born by vaginal delivery, gram-positive anaerobes and total anaerobes in maternal stool were positively correlated with levels of IL-10, and gram-negative aerobic bacteria in maternal stool were negatively correlated with levels of IL-13 and IFN-γ. Conclusion: Cesarean section is associated with increased levels of IL-13 and IFN-γ, perhaps because of lack of labor and/or reduced exposure to specific microbes (e.g., gram-positive anaerobes) at birth.

  • Publication

    Diversity of the Gut Microbiota and Eczema in Early Life

    (BioMed Central, 2008) Forno, Erick; Onderdonk, Andrew; McCracken, John Patrick; Litonjua, Augusto A.; Laskey, Daniel; Delaney, Mary; DuBois, Andrea M; Gold, Diane; Ryan, Louise; Weiss, Scott; Celedón, Juan C

    Background: A modest number of prospective studies of the composition of the intestinal microbiota and eczema in early life have yielded conflicting results. Objective: To examine the relationship between the bacterial diversity of the gut and the development of eczema in early life by methods other than stool culture. Methods: Fecal samples were collected from 21 infants at 1 and 4 months of life. Nine infants were diagnosed with eczema by the age of 6 months (cases) and 12 infants were not (controls). After conducting denaturating gradient gel electrophoresis (DGGE) of stool samples, we compared the microbial diversity of cases and controls using the number of electrophoretic bands and the Shannon index of diversity (H') as indicators. Results: Control subjects had significantly greater fecal microbial diversity than children with eczema at ages 1 (mean H' for controls = 0.75 vs. 0.53 for cases, P = 0.01) and 4 months (mean H' for controls = 0.92 vs. 0.59 for cases, P = 0.02). The increase in diversity from 1 to 4 months of age was significant in controls (P = 0.04) but not in children who developed eczema by 6 months of age (P = 0.32). Conclusion: Our findings suggest that reduced microbial diversity is associated with the development of eczema in early life.

  • Publication

    Maternal intestinal flora and wheeze in early childhood

    (Wiley-Blackwell, 2011) Lange, Nancy E; Celedón, Juan C.; Forno, Erick; Ly, Ngoc P.; Onderdonk, Andrew; Bry, Lynn; Delaney, Mary; DuBois, Andrea M.; Gold, Diane; Weiss, Scott; Litonjua, Augusto A.

    Background: Increasing evidence links altered intestinal flora in infancy to eczema and asthma. No studies have investigated the influence of maternal intestinal flora on wheezing and eczema in early childhood.

    Objective: To investigate the link between maternal intestinal flora during pregnancy and development of wheeze and eczema in infancy.

    Methods: Sixty pregnant women from the Boston area gave stool samples during the third trimester of their pregnancy and answered questions during pregnancy about their own health, and about their children’s health when the child was 2 and 6 months of age. Quantitative culture was performed on stool samples and measured in log10colony-forming units(CFU)/gram stool. Primary outcomes included infant wheeze and eczema in the first 6 months of life. Atopic wheeze, defined as wheeze and eczema, was analyzed as a secondary outcome.

    Results: In multivariate models adjusted for breastfeeding, daycare attendance and maternal atopy, higher counts of maternal total aerobes (TA) and enterococci (E) were associated with increased risk of infant wheeze (TA: OR 2.32 for 1 log increase in CFU/g stool [95% CI 1.22, 4.42]; E: OR 1.57 [95% CI 1.06, 2.31]). No organisms were associated with either eczema or atopic wheeze.

    Conclusions & Clinical Relevance: In our cohort, higher maternal total aerobes and enterococci were related to increased risk of infant wheeze. Maternal intestinal flora may be an important environmental exposure in early immune system development.