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Relationship between in utero C-reactive protein levels and asthma in at-risk children
Brittany Lapin1, Dennis Ownby2, Mary Turyk1
1Division of Epidemiology and Biostatistics, School of Public Health, University of Illinois at Chicago, Chicago, Illinois.
Insights
Maternal prenatal C-reactive protein (CRP) levels are linked to childhood asthma and wheezing by age 3. This suggests that inflammation during pregnancy may increase a child's risk for developing these respiratory conditions early in life.
Area of Science:
- Perinatal health
- Pediatric respiratory diseases
- Immunology
Background:
- Asthma research traditionally focuses on postnatal factors.
- Emerging evidence suggests prenatal exposures can initiate atopic immune responses.
- Maternal systemic inflammation during pregnancy may predispose offspring to allergic diseases.
Purpose of the Study:
- To examine the association between prenatal systemic inflammation, measured by C-reactive protein (CRP), and the development of asthma and wheezing in offspring.
- To investigate these associations within a high-risk, predominantly Mexican cohort in urban Chicago.
Main Methods:
- Utilized data from a randomized education intervention study (1998-2009).
- Included 244 mother-child pairs.
- Employed logistic regression models to assess the impact of prenatal CRP levels on asthma and wheezing diagnoses by age 3, controlling for confounders.
Main Results:
- Elevated prenatal CRP levels were significantly associated with an increased risk of asthma by age 3 (RR 2.4) and wheezing by age 3 (RR 1.7).
- These associations remained significant in non-smoking mothers of Mexican ethnicity.
- Findings suggest a potentially stronger effect in lower-risk populations.
Conclusions:
- Prenatal C-reactive protein levels are a significant predictor of asthma and wheezing in early childhood.
- Maternal systemic inflammation during pregnancy may create a prenatal environment that heightens offspring susceptibility to respiratory issues.
- Highlights the importance of the prenatal period in asthma development.
Background:
Asthma research has focused on postnatal exposures, but there is recent evidence to indicate atopic immune responses might be initiated in utero. Systemic inflammation during pregnancy might indicate an environment that could increase propensity in the child to develop allergic disease.
Objective:
To investigate the association of systemic inflammation, as measured by C-reactive protein (CRP) levels, with asthma and wheezing in offspring within an at-risk, mostly Mexican, cohort.
Methods:
Using data from a randomized education intervention of families at risk for asthma from 1998 followed through 2009 in urban Chicago, asthma was defined as ever having a physician diagnosis of asthma by 3 years of age and wheezing before the third year. Logistic regression models controlling for confounders investigated the effect of prenatal CRP levels on these outcomes.
Results:
There were 244 mother-child pairs included in the study analysis with median prenatal CRP levels of 4.9 mg/L (interquartile range 3.2-7.7). Continuous prenatal CRP levels were predictive of asthma by year 3 (relative risk 2.4, 95% confidence interval 1.3, 3.6) and wheezing in year 3 (relative risk 1.7, 95% confidence interval 1.1, 2.4) after adjustment. Associations remained significant in mothers who were of Mexican ethnicity and were nonsmokers, suggesting that effects might be stronger in children at lower risk of disease.
Conclusion:
Prenatal CRP levels are associated with asthma by year 3 and wheezing in year 3 within a high-risk, urban, mostly Mexican, cohort. Maternal systemic inflammation might reflect a prenatal environment that could increase offspring susceptibility to develop wheezing and asthma young in life.
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