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Isolation of Leukocytes from the Murine Tissues at the Maternal-Fetal Interface
Published on: May 21, 2015
The Foetal Origins of Allergy and Potential Nutritional Interventions to Prevent Disease
John O Warner1,2, Jill Amanda Warner2
1National Heart and Lung Institute, Imperial College, London SW3 6LY, UK.
Insights
The first 1000 days, from conception to age two, are critical for immune development and long-term health. Overall maternal and infant nutrition, alongside the microbiome, appears more crucial for preventing allergies than single nutrients.
Area of Science:
- Immunology
- Developmental Biology
- Nutritional Science
Background:
- The first 1000 days (conception to second birthday) are critical for immune programming and long-term health.
- Maternal factors (genome, health, diet, environment) significantly influence fetal immune development.
- Neonatal immune responses are biased towards Th-2 (allergy) and T-regulatory (tolerance) cytokines.
Purpose of the Study:
- To explore the critical role of maternal and infant nutrition and the microbiome in immune development and allergy prevention.
- To investigate the impact of overall dietary patterns versus single nutrients on allergic disease susceptibility.
- To highlight the need for further research into nutritional interventions during pregnancy and post-weaning.
Main Methods:
- Review of existing literature on immune ontogeny, maternal influences, and early-life nutrition.
- Analysis of observational studies linking dietary practices to allergic disease prevalence.
- Evaluation of intervention trials for single nutrient supplementation in allergy prevention.
Main Results:
- Single nutrient supplementation trials have not yielded expected allergy prevention outcomes.
- Healthy dietary patterns (e.g., Mediterranean diet) are associated with reduced allergy prevalence.
- Maternal and infant nutrition and microbiome composition are key modifiable factors influencing allergy outcomes.
Conclusions:
- Overall nutritional patterns, rather than individual nutrients, are more significant for immune programming and allergy prevention.
- Maternal and infant nutrition and microbiome modulation are promising targets for allergy prevention strategies.
- Large-scale controlled trials are necessary to validate these findings and inform clinical practice.
Abstract:
The first nine months from conception to birth involves greater changes than at any other time in life, affecting organogenesis, endocrine, metabolic and immune programming. It has led to the concept that the "first 1000 days" from conception to the second birthday are critical in establishing long term health or susceptibility to disease. Immune ontogeny is predominantly complete within that time and is influenced by the maternal genome, health, diet and environment pre-conception and during pregnancy and lactation. Components of the immunological protection of the pregnancy is the generation of Th-2 and T-regulatory cytokines with the consequence that neonatal adaptive responses are also biased towards Th-2 (allergy promoting) and T-regulatory (tolerance promoting) responses. Normally after birth Th-1 activity increases while Th-2 down-regulates and the evolving normal human microbiome likely plays a key role. This in turn will have been affected by maternal health, diet, exposure to antibiotics, mode of delivery, and breast or cow milk formula feeding. Complex gene/environment interactions affect outcomes. Many individual nutrients affect immune mechanisms and variations in levels have been associated with susceptibility to allergic disease. However, intervention trials employing single nutrient supplementation to prevent allergic disease have not achieved the expected outcomes suggested by observational studies. Investigation of overall dietary practices including fresh fruit and vegetables, fish, olive oil, lower meat intake and home cooked foods as seen in the Mediterranean and other healthy diets have been associated with reduced prevalence of allergic disease. This suggests that the "soup" of overall nutrition is more important than individual nutrients and requires further investigation both during pregnancy and after the infant has been weaned. Amongst all the potential factors affecting allergy outcomes, modification of maternal and infant nutrition and the microbiome are easier to employ than changing other aspects of the environment but require large controlled trials before recommending changes to current practice.
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