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March 7, 2026International Journal of Environmental Health Research0 citations

Air pollution and female reproductive traits: insights from bibliometrics and Mendelian randomization

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FCFan-Hua CaoSCShuo ChenLLLinlin Liu

Key Points

  • The research investigates how air pollution influences female reproductive traits using bibliometric and Mendelian randomization methods.
  • Conducted a bibliometric analysis of research output from the Web of Science database.
  • Utilized Mendelian randomization to explore genetic associations with air pollution exposure.
  • Analyzed the impact of specific air pollutants like PM2.5 and NOx on reproductive traits across different ancestry groups.
  • Genetically predicted exposure to PM2.5 was linked to later age at first birth and first live birth in European ancestry individuals.
  • PM2.5-10 and PM10 exposure were associated with a delayed age at first birth.
  • In the African ancestry cohort, PM2.5-10 correlated with an earlier age at menarche, while NOx was linked to delayed first and last live births.

Abstract

This study employed a dual-method approach integrating bibliometric analysis and Mendelian randomization (MR) to investigate the relationship between air pollution and female reproductive traits. A bibliometric analysis of the Web of Science database (up to May 2025) identified a marked increase in research output after 2010, with China, the USA, and the UK as the leading contributors. The analysis highlighted key mechanistic themes, including oxidative stress, endocrine disruption, and emerging interest in epigenetic mechanisms. Using MR to explore potential genetic links, we found that in individuals of European ancestry, genetically predicted exposure to PM2.5 was associated with a later age at first birth (AFB) and first live birth (AFLB). PM2.5-10 and PM10 were associated with AFB, while NOx was linked to later timing of AFLB, last live birth (ALLB), first sexual intercourse (AFS), and natural menopause (ANM) (all *p* < 0.05). In the African ancestry cohort, more limited but notable signals were observed: PM2.5-10 was associated with an earlier age at menarche (AAM), and NOx with later AFLB and ALLB. All findings were supported by sensitivity analyses showing no evidence of pleiotropy.

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Cite This Study

Cao et al. (2026) studied this question.

synapsesocial.com/papers/69abc1645af8044f7a4e9fdahttps://doi.org/10.1080/09603123.2026.2632929
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