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Published on: August 7, 2017
Early-Life Exposure to Oral Antibiotics and Lung Function Into Early Adulthood
Karoliny Dos Santos1, Caroline J Lodge2, Michael J Abramson3
1Postgraduate Program in Health Sciences, University of Southern Santa Catarina, Palhoça, SC, Brazil; Allergy and Lung Health Unit, Melbourne School of Population and Global Health, University of Melbourne, Parkville, VIC, Australia.
Insights
Early childhood antibiotic exposure did not impair lung function in children with allergy history. Genetic factors and specific antibiotic types also showed no increased risk for lung deficits.
Area of Science:
- Pediatric Pulmonology
- Pharmacology
- Genetics
Background:
- Ongoing debate exists regarding early antibiotic exposure and asthma development.
- The impact of antibiotics on childhood lung function and potential genetic risk factors remains unclear.
Purpose of the Study:
- To investigate the association between early postnatal antibiotic exposure and lung function in children.
- To determine if specific antibiotic types or genetic polymorphisms in glutathione S-transferase (GST) influence this relationship.
Main Methods:
- A birth cohort of 620 infants with allergy history provided parent-reported antibiotic use data (birth to 2 years).
- Spirometry was conducted at ages 12 and 18 years.
- Participants were genotyped for GST polymorphisms, and linear regression models were used for analysis.
Main Results:
- No significant association was found between increased antibiotic exposure duration or earlier exposure and reduced lung function (FEV1 or FVC) at 18 years.
- Glutathione S-transferase (GST) polymorphisms (M1, P1, T1) did not increase susceptibility to lung function deficits.
- Specific types of antibiotics did not elevate the risk of impaired lung function.
Conclusions:
- Early postnatal oral antibiotic exposure is not linked to reduced lung function in children with a family history of allergic diseases.
- While minimizing unwarranted antibiotic use is important, concerns about long-term lung health should not be the primary driver for this minimization.
Background:
Although there is ongoing debate regarding the impact of early postnatal exposure to antibiotics on the development of asthma, the possibility that antibiotic exposure may impair lung function has not previously been examined. Furthermore, it is unclear if specific types of antibiotics may have a greater effect, or if children with genetic mutations in the oxidative stress response glutathione S-transferase (GST) superfamily may be at greater risk.
Methods:
Parent-reported data of childhood antibiotic use from birth to 2 years, including type and indication, were collected from a birth cohort of 620 infants with a family history of allergy. Spirometry was performed at age 12 and 18 years, and results are presented as z scores. Participants were genotyped for GST-P, GST-M, and GST-T polymorphisms. Linear regression models were used to investigate the associations while adjusting for confounding factors.
Results:
Neither increasing days of exposure nor earlier exposure to antibiotics was associated with reduced FEV1 (at 18 years, per doubling of days of exposure = -0.03 z score units; 95% CI, -0.11 to 0.04) or FVC (< 0.01; 95% CI, -0.08 to 0.07). There was no evidence that GST-risk polymorphisms (M1, P1, and T1) increased susceptibility, and specific types of antibiotics also did not increase risk of lung function deficits.
Conclusions:
Increasing exposure to oral antibiotics in early postnatal life was not associated with reduced lung function in children with a family history of allergic diseases. Although unwarranted use of antibiotics in children should be minimized, concerns regarding long-term lung health should not be a driving influence for this rationalization of use.
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