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Published on: November 4, 2010
Delay of growth and development in children with bronchial asthma, atopic dermatitis and allergic rhinitis
W F Baum1, U Schneyer, A M Lantzsch
1Department of Paediatrics, Martin-Luther-University Halle-Wittenberg, Ernst-Grube-Strasse 40, D-06097 Halle/Saale, Germany. walter.baum@medizin.uni-halle.de
Insights
Atopic disorders, like asthma and eczema, are linked to short stature in children due to genetic factors and growth factor imbalances. Further research is needed to understand these atopy-related growth disturbances.
Area of Science:
- Pediatric Endocrinology
- Allergology
- Genetics
Background:
- Children with atopic disorders show higher rates of short stature, skeletal retardation, and delayed puberty.
- This suggests a direct influence of atopy, not just disorder severity, on growth.
- Allergic rhinitis, even in non-severe cases, is associated with increased short stature prevalence.
Purpose of the Study:
- To investigate the causal link between atopy and skeletal growth disturbances.
- To explore the role of specific growth factors and their interaction with allergic responses in children's growth.
- To determine if atopy should be considered in the differential diagnosis of growth problems.
Main Methods:
- Observational analysis of growth patterns in children with atopic conditions.
- Review of existing literature on the interplay between atopy, bone metabolism, and growth factors.
- Proposed research on local growth factors (PGE(2), PAF, IGF I) and hormonal factors in atopic short stature.
Main Results:
- Atopic children exhibit 2-5 times higher rates of short stature compared to the general population.
- Skeletal retardation is more common in boys with atopy (2:1 ratio).
- Atopy influences growth factor pathways, such as prostaglandin E(2) (PGE(2)) and platelet-activating factor (PAF), impacting bone metabolism.
Conclusions:
- Atopy itself, independent of disorder severity, contributes to skeletal growth retardation.
- Imbalances in local and systemic growth factors due to atopy can delay skeletal maturation.
- Atopy should be considered in the differential diagnosis of growth and development disturbances in children.
Abstract:
The elevated incidence of short stature (body height < (-)x - 2s), skeletal retardation and delayed puberty in children with bronchial asthma or atopic dermatitis is generally attributed to the severity of the disorder. However, a series of findings indicate a causal influence of the atopy and the existence of atopic skeletal retardation per se.The observation that children with atopic disorders, whether bronchial asthma, atopic dermatitis or allergic rhinitis, exhibit a rate of short stature that is twice to five times higher than normal indicates atopic and thus genetically determined influences. The elevated prevalence of short stature associated with allergic rhinitis is especially significant, as this disorder cannot be included among the severe chronic disorders. The fact that skeletal retardation is more prevalent in boys than in girls by a ratio of about 2:1 and that a significantly more marked retardation of bone maturation is found in atopic in comparisons with non-atopic asthmatics also lend support to this postulation. The clinical relevance of atopic growth retardation is also supported by the close interaction of pathophysiological basal mechanisms of bone metabolism and the atopy status. Thus the local growth factor prostaglandin E(2) (PGE(2)), which is important for bone metabolism, is also a messenger substance for the immediate and late allergic reaction. The platelet-activating factor (PAF), as one of the strongest mediators in the pathogenesis of allergic disorders, influences the PGE(2) synthesis in the osteoblasts. These relationships show that atopy-dependent imbalances in the complex system of local and systemic growth factors can certainly lead to disturbance of skeletal maturation which may delay growth and development in atopic children. In order to verify these assumptions it is necessary to research the interaction of local growth factors (particularly the roles of PGE(2), PAF and IGF I) in the skeletons of children of short stature suffering from atopic disorders. This should also include the possible effects on the overall hormonal factors influencing bone maturation. Atopy should be included in the differential diagnosis programme to clarify growth and development disturbances.
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