Publications by authors named "Roduit C"

Article Synopsis
  • - The study investigates the gut and skin microbiome of young children with food allergies (FA), discovering that they exhibit greater bacterial diversity compared to non-allergic kids over time.
  • - Researchers analyzed samples from 23 children with newly diagnosed IgE-mediated FA, finding a significant correlation between higher total IgE levels and certain bacterial genera related to the number of allergies, particularly with tree nut and peanut allergies.
  • - These results enhance the understanding of microbiome dynamics in food-allergic children and suggest the potential role of specific bacterial genera as biomarkers for certain food allergies.
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Article Synopsis
  • - The study investigates how early-life risk factors from both host and environment interact with an infant's respiratory system to influence the development of wheezing and asthma over time.
  • - Researchers analyzed data from two large cohorts of healthy infants (BILD and PASTURE) to identify the effects of various factors on wheezing and asthma outcomes, specifically tracking symptom severity scores over the first year of life.
  • - Findings showed a complex dynamic interplay between different risk factors and breathing symptoms, ultimately highlighting the importance of these interactions in predicting respiratory health outcomes in young children.
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Background: Consumption of ultra-processed foods [UPFs] may be associated with negative health outcomes. Limited data exist regarding the potential role of UPFs in the occurrence of allergic diseases. The underlying mechanisms underpinning any such associations are also poorly elucidated.

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Article Synopsis
  • * Key discussions included the prevalence of AD, advancements in treatment and management, and the importance of considering environmental and lifestyle factors affecting patients.
  • * The forum emphasizes the need for increased awareness and collaboration among stakeholders to close the gap between research advancements and practical applications in patient care.
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Background: Numerous children present with early wheeze symptoms, yet solely a subgroup develops childhood asthma. Early identification of children at risk is key for clinical monitoring, timely patient-tailored treatment, and preventing chronic, severe sequelae. For early prediction of childhood asthma, we aimed to define an integrated risk score combining established risk factors with genome-wide molecular markers at birth, complemented by subsequent clinical symptoms/diagnoses (wheezing, atopic dermatitis, food allergy).

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Article Synopsis
  • The study looked at how short chain fatty acids (SCFAs), which come from gut bacteria, might be connected to allergies.
  • They reviewed 37 papers, focusing on SCFAs during pregnancy and early childhood, and their relationship with allergic diseases like eczema and asthma.
  • The results suggested that certain SCFAs might help protect against allergies, but more research is needed to understand how and when they work best.
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Background: Skin barrier dysfunction is associated with the development of atopic dermatitis (AD), however methods to assess skin barrier function are limited. We investigated the use of electrical impedance spectroscopy (EIS) to detect skin barrier dysfunction in children with AD of the CARE (Childhood AlleRgy, nutrition, and Environment) cohort.

Methods: EIS measurements taken at multiple time points from 4 months to 3-year-old children, who developed AD (n = 66) and those who did not (n = 49) were investigated.

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Previous studies indicated an intrinsic relationship between infant diet, intestinal microbiota composition and fermentation activity with a strong focus on the role of breastfeeding on microbiota composition. Yet, microbially formed short-chain fatty acids acetate, propionate and butyrate and other fermentation metabolites such as lactate not only act as substrate for bacterial cross-feeding and as mediators in microbe-host interactions but also confer antimicrobial activity, which has received considerably less attention in the past research. It was the aim of this study to investigate the nutritional-microbial interactions that contribute to the development of infant gut microbiota with a focus on human milk oligosaccharide (HMO) fermentation.

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Background: Conflicting results have been obtained when analyzing the relationship between complementary feeding (CF) practices and allergic diseases in childhood. This study aims to further explore the association between allergic diseases in early childhood (10.1016/j.

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Background: Although children can frequently experience a cough that affects their quality of life, few epidemiological studies have explored cough without a cold during childhood.

Objectives: The objective of the study was to describe the latent class trajectories of cough from one to 10 years old and analyse their association with wheezing, atopy and allergic diseases.

Methods: Questions about cough, wheeze and allergic diseases were asked at 1, 1.

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Background: An important window of opportunity for early-life exposures has been proposed for the development of atopic eczema and asthma.

Objective: However, it is unknown whether hay fever with a peak incidence around late school age to adolescence is similarly determined very early in life.

Methods: In the Protection against Allergy-Study in Rural Environments (PASTURE) birth cohort potentially relevant exposures such as farm milk consumption and exposure to animal sheds were assessed at multiple time points from infancy to age 10.

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Article Synopsis
  • * The most common food allergens identified were milk, egg, peanut, exotic fruits, tree nuts, gluten, and fish.
  • * Besides food allergies, many affected children also displayed symptoms of associated atopic diseases, with 20.5% having multiple allergies, and significant rates of eczema, asthma, and allergic rhinitis.
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Background: Impaired microbial development and decreased levels of short chain fatty acids, particularly butyrate, is suggested to have a role in the development of atopic dermatitis (AD).

Methods: Faecal microbiota composition, abundance of selected bacterial groups and fermentation metabolites were compared at 90, 180 and 360 days of life between 27 children who developed AD by age one (AD group), and 39 controls (non-AD group) among the CARE (Childhood AlleRgy, nutrition and Environment) study cohort.

Results: Diversity within the Firmicutes and Bacteroidetes phylum in the faecal microbiota was lower in the AD group compared to the non-AD group.

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Microbial metabolism of specific dietary components, such as fiber, contributes to the sophisticated inter-kingdom dialogue in the gut that maintains a stable environment with important beneficial physiological, metabolic, and immunological effects on the host. Historical changes in fiber intake may be contributing to the increase of allergic and hypersensitivity disorders as fiber-derived metabolites are evolutionarily hardwired into the molecular circuitry governing immune cell decision-making processes. In this review, we highlight the importance of fiber as a dietary ingredient, its effects on the microbiome, its effects on immune regulation, the importance of appropriate timing of intervention to target any potential window of opportunity, and potential mechanisms for dietary fibers in the prevention and management of allergic diseases.

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Asthma and allergies are major health problems and exert an enormous socioeconomic burden. Besides genetic predisposition, environmental factors play a crucial role in the development of these diseases in childhood. Multiple worldwide epidemiological studies have shown that children growing up on farms are immune to allergic diseases and asthma.

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In murine models, microbial exposures induce protection from experimental allergic asthma through innate immunity. Our aim was to assess the association of early life innate immunity with the development of asthma in children at risk. In the PASTURE farm birth cohort, innate T-helper cell type 2 (Th2), Th1, and Th17 cytokine expression at age 1 year was measured after stimulation of peripheral blood mononuclear cells with LPS in  = 445 children.

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Background: The influence of diet in early childhood on later allergic diseases is currently a highly debated research topic. We and others have suggested that an increased diet diversity in the first year of life has a protective effect on the development of allergic diseases.

Objective: This follow-up study aimed to investigate associations between diet in the second year of life and later allergic diseases.

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It remains uncertain as to whether nutrient supplementation for the general population considered healthy could be useful in the prevention of RTIs, such as COVID-19. In this systematic review and meta-analysis, the evidence was evaluated for primary prevention of any viral respiratory tract infection (RTI) such as SARS-CoV-2, through supplementation of nutrients with a recognized role in immune function: multiple micronutrients, vitamin A, folic acid, vitamin B12, C, D, E, beta-carotene, zinc, iron and long-chain polyunsaturated fatty acids. The search produced 15,163 records of which 93 papers (based on 115 studies) met the inclusion criteria, resulting in 199,055 subjects (191,636 children and 7,419 adults) from 37 countries.

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A higher diversity of food items introduced in the first year of life has been inversely related to subsequent development of asthma. In the current analysis, we applied latent class analysis (LCA) to systematically assess feeding patterns and to relate them to asthma risk at school age. PASTURE (N=1133) and LUKAS2 (N=228) are prospective birth cohort studies designed to evaluate protective and risk factors for atopic diseases, including dietary patterns.

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Article Synopsis
  • - Growing up on a farm appears to protect children from developing asthma, and this research investigates why that might be by looking at the gut microbiome in infants from 2 to 12 months old.
  • - The study found that infants exposed to farms had a certain "microbiome age" linked to lower asthma risks later on, with a 19% mediation effect from this microbiome age.
  • - The presence of butyrate, a beneficial gut metabolite, and its related bacteria and enzymes were associated with reduced asthma risk, suggesting a possible connection between gut health and lung health known as the "gut-lung axis."
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The acquisition of the infant gut microbiota is key to establishing a host-microbiota symbiosis. Microbially produced metabolites tightly interact with the immune system, and the fermentation-derived short-chain fatty acid butyrate is considered an important mediator linked to chronic diseases later in life. The intestinal butyrate-forming bacterial population is taxonomically and functionally diverse and includes endospore formers with high transmission potential.

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Rationale: Allergic diseases are an increasing public health concern, and early life environment is critical to immune development. Maternal diet during pregnancy has been linked to offspring allergy risk. In turn, maternal diet is a potentially modifiable factor, which could be targeted as an allergy prevention strategy.

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To fully understand the role of diet diversity on allergy outcomes and to set standards for conducting research in this field, the European Academy of Allergy and Clinical Immunology Task Force on Diet and Immunomodulation has systematically explored the association between diet diversity and allergy outcomes. In addition, a detailed narrative review of information on diet quality and diet patterns as they pertain to allergic outcomes is presented. Overall, we recommend that infants of any risk category for allergic disease should have a diverse diet, given no evidence of harm and some potential association of benefit in the prevention of particular allergic outcomes.

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Background: Childhood asthma is often preceded by early wheeze. Usually, wheezing episodes are recorded retrospectively, which may induce recall bias.

Aims And Objectives: The aim of this study was to investigate true-positive recall of parent-reported wheeze at 1 year of age, its determinants, and its implications for asthma and lung function at 6 years of age.

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Rural lifestyle has been shown to be highly protective against the development of allergies. Contact to farm-animals or pets and early-life consumption of milk products turned out to be important. These exposures provide contact to N-glycolylneuraminic acid (Neu5Gc), a sialic acid naturally expressed in mammalians but not in humans or microbes although both are able to incorporate exogenously provided Neu5Gc and induce thereby an anti-Neu5Gc antibody response.

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