- August 15, 2026
- Updated 9:15 am
Study Links Pesticide Residue to Earlier Puberty in Girls
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- August 4, 2026
- Health Public Health
A chemical associated with agricultural fungicides, commonly present as residue on food, may contribute to earlier menstruation in girls. Recent research from Spain indicates this connection. The study, published in Environmental Research, assesses 506 girls from the Spanish INMA (Environment and Childhood) project. It finds that higher levels of a chemical named ethylene thiourea (ETU) increase the likelihood of earlier menarche, the first menstrual cycle.
Researchers measured pesticide metabolites in urine samples collected from children aged between 7 and 10, tracking them through adolescence. The team evaluated exposure markers of multiple modern pesticides, such as insecticides and fungicides, known to disrupt endocrine activities by interfering with hormonal functions.
Early puberty emerges as a significant public health concern. Currently, menarche typically occurs between ages 12 and 13 across many regions. Data indicates this age has significantly decreased over the last century. Early onset of puberty correlates with a heightened risk of metabolic, cardiovascular, and mental health issues later. Additionally, it connects to higher incidences of hormone-related cancers.
ETU is a breakdown product of ethylene-bis-dithiocarbamate fungicides, including mancozeb. Girls with elevated ETU levels were found to be 32 to 39 percent more likely to undergo menarche compared to those with undetectable levels. Diet, particularly conventionally grown fruits and vegetables, constitutes the primary exposure source for most individuals. Despite modern pesticides’ utilization in non-agricultural contexts, diet remains the key exposure contributor for the populace.
The average menarche age among the study’s participants varied, with most girls attaining the milestone just beyond 12 years, though observed ages ranged from 9 to 15 years. Interestingly, an inverse association emerged involving another pesticide marker. Girls with noticeable TCPy levels, a metabolite linked to the insecticide chlorpyrifos, typically reached menarche later than those with inconspicuous levels. The rationale behind this finding remains uncertain.
Researchers emphasized that these findings don’t conclusively prove pesticides induce early puberty. Biological explanations could clarify this linkage, potentially involving effects on thyroid hormones and reproductive signaling paths. However, the observational nature of the study prevents establishing a definitive cause-effect relationship.
Various limitations require consideration, including reliance on singular childhood urine sample measurements to estimate pesticide exposure. Given these chemicals’ rapid elimination from the body, a solitary measurement may not accurately depict long-term exposure. Nonetheless, researchers affirm the study provides groundbreaking prospective evidence relating modern non-persistent pesticide exposure to puberty timing in girls.
They advocate for extensive studies to verify these findings and enhance understanding of pesticide mixture exposure impacts on children’s development.