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Inflammatory Dysregulation, Asthma, and Obesity in Children: What is the Relationship?
Sarai Duran1, Anna Reichenbach1, Deepa Rastogi1
1Department of Pediatrics, Albert Einstein College of Medicine, Bronx, NY, USA.
Insights
Pediatric obesity is a major risk factor for asthma, driven by immune system changes. Further research is needed to understand the role of metabolism in this distinct asthma phenotype.
Area of Science:
- Immunology
- Pediatrics
- Respiratory Medicine
Background:
- Pediatric obesity is a growing global health concern, impacting multiple organ systems.
- Obesity-related asthma is a significant comorbidity in children, with immune dysregulation playing a key role.
- Asthma in obese children presents a distinct phenotype compared to healthy-weight children.
Purpose of the Study:
- To explore the immune pathobiology of pediatric obesity-related asthma.
- To identify novel pathways and cellular mechanisms contributing to this distinct asthma phenotype.
- To highlight the need for further investigation into immunometabolism in pediatric asthma.
Main Methods:
- Analysis of innate and adaptive immune responses in pediatric obesity-related asthma.
- Investigation of T helper (Th) cell transcriptomic profiles, including bulk and single-cell analyses.
- Examination of the role of neutrophils and metabolic abnormalities in pediatric obesity-related asthma.
Main Results:
- Increased pro-inflammatory M1 macrophages and T helper 1 cells are observed in pediatric obesity-related asthma.
- The CDC42 pathway is upregulated in Th cells of obese children with asthma, promoting airway smooth muscle activation.
- Neutrophils appear more prominent than eosinophils, and metabolic factors like insulin resistance are linked to pediatric asthma, though mechanisms are unclear.
Conclusions:
- Pediatric obesity-related asthma is a distinct phenotype characterized by specific immune dysregulations.
- Novel pathways like CDC42 are implicated in the pathogenesis of this condition.
- Further research into immunometabolism is crucial for understanding and treating pediatric obesity-related asthma.
Abstract:
Pediatric obesity is one of the foremost global chronic medical conditions. It affects almost every organ system via mechanisms that tend to be organ-specific. Obesity-related asthma is one such pediatric comorbidity that is rising in incidence such that obesity is now considered the foremost modifiable risk factor for asthma. Immune dysregulation of both innate and adaptive responses is one of the best understood pathobiologic mechanisms underlying obesity-related asthma. From the perspective of innate immune dysregulation, there are higher proportions of pro-inflammatory M1 macrophages in systemic circulation and in the airway in pediatric studies; the underlying mechanisms are only studied among adults wherein airway M1 macrophages impaired efferocytosis and induced neutrophil recruitment in the airway. From the perspective of adaptive immune responses, there are higher proportion of T helper 1 cells that are associated with lower lung function supporting the non-allergic phenotype of pediatric obesity-related asthma. There is also substantial new literature from bulk and single cell transcriptomic T cell analyses that have identified novel pathways and distinct differentiation of Th cells in obese children as compared to healthy-weight children with asthma. CDC42 pathway is one such pathway that is upregulated in Th cells from obese children with asthma and is associated with Th cell chemotaxis and adhesion to airway smooth muscle (ASM), activating pathways that promote ASM contractility and proliferation. There is also increased recognition of the role of neutrophils, as compared to eosinophils, in pediatric obesity-related asthma but the mechanistic pathways that are functional relevance in disease phenotype have not yet been investigated. Finally, obesity-mediated metabolic abnormalities, including insulin resistance and dyslipidemia, have been epidemiologically linked with pediatric asthma but their underlying mechanisms are not known. In summary, there have been several strides in understanding the immune pathobiology of pediatric obesity-related asthma which have firmly established it as a distinct asthma phenotype, which have highlighted the need for further scientific investigation of mechanisms that underlie the contribution of immunometabolism.
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