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Air pollution exposure tied to lower thyroid hormone levels in pregnant women and neonatesAir Pollution Linked to Lower Thyroid Function in Mothers and Babies

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Key Takeaway
Consider air pollution exposure as a potential risk factor for thyroid dysfunction in pregnancy and neonates, but interpret associational findings cautiously.

This meta-analysis synthesized data from 24 studies, including 55,814 pregnant women and 84,645 neonates, to evaluate the association between ambient air pollution (particulate matter, PM) and thyroid function in pregnancy and early life. The analysis focused on maternal and neonatal thyroid hormone levels, particularly free thyroxine (FT4), and the risk of maternal hypothyroxinemia.

Key findings include a significant decrease in maternal FT4 levels by -0.42% (95% CI: -0.83%, -0.01%) per 10 μg/m increase in PM, and a more pronounced decrease in neonatal FT4 levels by -0.90% (95% CI: -1.52%, -0.29%) per 10 μg/m increase. Additionally, PM exposure was associated with increased odds of maternal hypothyroxinemia (OR = 1.49, 95% CI: 1.16, 1.91).

The authors noted inconsistent findings across individual studies, and a nonlinear relationship was identified for maternal thyroid hormone levels. These results are associative, not causal, as the analysis is based on observational data rather than a clinical trial.

The findings underscore the potential impact of air pollution on thyroid health during pregnancy and neonatal development, suggesting that stricter air quality regulations may be beneficial. However, given the observational nature and heterogeneity, these results should be interpreted with caution and do not establish a direct cause-and-effect relationship.

A large review of 24 different studies looked at how air pollution, specifically particulate matter (PM), affects the health of pregnant women and their infants. The study included data from over 55,000 pregnant women and more than 84,000 neonates to see if there was a link between air quality and thyroid function.

The researchers found that as levels of particulate matter in the air increased, both mothers and babies showed lower levels of thyroid hormones. Specifically, for every 10 micrograms per cubic meter increase in pollution, maternal hormone levels dropped by about 0.42 percent and neonatal levels dropped by about 0.90 percent. The data also showed a higher risk of hypothyroxinemia, which is low thyroid hormone, in pregnant women exposed to these pollutants.

It is important to note that this study shows an association rather than a direct cause. Some findings across the studies were inconsistent, and the relationship for maternal hormones was not always a straight line. These results suggest that air quality may impact thyroid health during pregnancy and early infancy.

What this means for you:
Higher levels of air pollution are linked to lower thyroid hormone levels in both pregnant women and newborns.

Common questions

How does air pollution affect pregnancy?

The study found that higher levels of particulate matter (PM) in the air are linked to a decrease in thyroid hormone levels in pregnant women. Specifically, for every 10 micrograms per cubic meter increase in PM, maternal FT4 levels decreased by 0.42 percent.

Is there an impact on newborns?

Yes, the data shows a link between air pollution and lower thyroid hormones in neonates. For every 10 micrograms per cubic meter increase in particulate matter, neonatal FT4 levels were found to decrease by 0.90 percent.

What is maternal hypothyroxinemia?

Hypothyroxinemia refers to low thyroid hormone levels in the mother. The study found that exposure to air pollution was associated with an increased risk of this condition, showing an odds ratio of 1.49 for those exposed to higher particulate matter.

Study Details

Study typeMeta analysis
EvidenceLevel 1
PublishedAug 2026
View Original Abstract ↓
Thyroid function in both pregnant women and newborns is vital for ensuring healthy child growth and development. Existing evidence suggests that exposure to air pollutants during pregnancy may disrupt maternal and neonatal thyroid function; however, findings across studies remain inconsistent. This systematic review and meta-analysis included 24 studies (55,814 pregnant women and 84,645 neonates) published until April 30, 2025. Results indicated that each 10 μg/m increase in PM was associated with a significant decrease in maternal FT4 levels (-0.42%; 95% CI: -0.83%, -0.01%) and neonatal FT4 levels (-0.90%; 95% CI: -1.52%, -0.29%). PM exposure also increased the risk of maternal hypothyroxinemia (OR = 1.49; 95% CI: 1.16, 1.91). Subgroup analyses revealed stronger effects in the first and third trimesters. Additionally, the study found a nonlinear relationship between PM exposure and thyroid hormone levels in pregnant women while potential breakpoints vary across thyroid parameters, which range from 20.60 to 71.02 μg/m, the collective patterns indicate that the most dynamic PM-related effects on maternal thyroid function occur within the 20-60 μg/m exposure window. Above approximately 60 μg/m, response slopes generally diminish, reflecting a sublinear curvature in the exposure-response relationships. These breakpoints notably exceed the World Health Organization air quality guideline (10 μg/m). These findings underscore the need for stricter air quality regulations to protect maternal and neonatal thyroid health. Further research is warranted to explore the underlying mechanisms and identify critical exposure windows.
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