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The Prebiotic and Probiotic Properties of Human Milk: Implications for Infant Immune Development and Pediatric Asthma
Shirin Moossavi1,2,3,4, Kozeta Miliku2,3,5, Shadi Sepehri2
1Department of Medical Microbiology and Infectious Diseases, University of Manitoba, Winnipeg, MB, Canada.
Insights
Pediatric asthma is rising, potentially due to altered infant gut microbiota. Breast milk components like human milk oligosaccharides (HMOs) and milk microbes may offer protection by shaping gut bacteria and immune development.
Area of Science:
- Immunology
- Microbiology
- Pediatrics
Background:
- Pediatric asthma incidence has risen globally, with a 14% worldwide prevalence.
- This increase may stem from reduced microbial diversity in the infant gut microbiota, impacting immune development.
- Early life exposures, particularly breastfeeding, are critical for gut microbiota and immune system maturation.
Purpose of the Study:
- To review the evidence on how human milk oligosaccharides (HMOs) and milk microbiota protect against pediatric asthma.
- To explore the mechanisms and hypotheses behind their synergistic effects on infant gut microbiota and immune development.
- To understand the role of breast milk's prebiotic and probiotic properties in asthma prevention.
Main Methods:
- Review of current scientific literature and evidence.
- Analysis of mechanisms by which HMOs and milk microbiota influence the infant gut.
- Examination of hypotheses regarding their combined effects on immune system development.
Main Results:
- Human milk oligosaccharides (HMOs) selectively promote beneficial bacteria like Bifidobacteria.
- Milk microbiota provides viable bacteria, acting as a probiotic source.
- Both HMOs and milk microbiota modulate gut microbial assembly through selection and dispersal.
Conclusions:
- Breast milk components, specifically HMOs and milk microbiota, play a crucial role in protecting against pediatric asthma.
- Their combined prebiotic and probiotic effects are vital for optimal infant immune development.
- Further research into these synergistic interactions can inform asthma prevention strategies.
Abstract:
The incidence of pediatric asthma has increased substantially in recent decades, reaching a worldwide prevalence of 14%. This rapid increase may be attributed to the loss of "Old Friend" microbes from the human microbiota resulting in a less diverse and "dysbiotic" gut microbiota, which fails to optimally stimulate immune development during infancy. This hypothesis is supported by observations that the gut microbiota is different in infants who develop asthma later in life compared to those who remain healthy. Thus, early life exposures that influence gut microbiota play a crucial role in asthma development. Breastfeeding is one such exposure; it is generally considered protective against pediatric asthma, although conflicting results have been reported, potentially due to variations in milk composition between individuals and across populations. Human milk oligosaccharides (HMOs) and milk microbiota are two major milk components that influence the infant gut microbiota and hence, development of the immune system. Among their many immunomodulatory functions, HMOs exert a selective pressure within the infant gut microbial niche, preferentially promoting the proliferation of specific bacteria including Bifidobacteria. Milk is also a source of viable bacteria originating from the maternal gut and infant oral cavity. As such, breastmilk has prebiotic and probiotic properties that can modulate two of the main forces controlling the gut microbial community assembly, i.e., dispersal and selection. Here, we review the latest evidence, mechanisms and hypotheses for the synergistic and/or additive effects of milk microbiota and HMOs in protecting against pediatric asthma.
Related Concept Videos
Asthma-I: Introduction
Asthma-III: Symptoms and Complications
Classification of Asthma
Asthma-IV: Diagnostic and Management
Clinical Assessment for Asthma:
This is the first step in diagnosing and managing asthma. It includes:
Asthma: Pathogenesis and Management
Asthma is classified as allergic and non-allergic. Allergens such as dust mites, pollen, and pet dander trigger allergic asthma, while factors like cold air, intense emotions, or exercise can induce non-allergic asthma.
Asthma-II: Pathophysiology and Classification
Additionally, environmental and genetic factors play crucial roles in determining an individual's susceptibility to asthma and the severity of their condition.
Critical processes in asthma pathophysiology include:
What is the Immune System?

