Source: http://ehp03.niehs.nih.gov/article/fetchArticle.action?articleURI=info%3Adoi%2F10.1289%2Fehp.1104912
Background:
Although fluoride may cause neurotoxicity in animal models and acute
fluoride poisoning causes neurotoxicity in adults, very little is known
of its effects on children’s neurodevelopment.
Objective: We performed a systematic review and meta-analysis of
published studies to investigate the effects of increased fluoride
exposure and delayed neurobehavioral development.
Methods: We searched the MEDLINE, EMBASE, Water Resources Abstracts,
and TOXNET databases through 2011 for eligible studies. We also searched
the China National Knowledge Infrastructure (CNKI) database, as many
studies on fluoride neurotoxicity have been published in Chinese
journals only. In total, we identified 27 eligible epidemiological
studies with high and reference exposures, endpoints of IQ scores or
related cognitive function measures with means and variances for the two
exposure groups. We estimated the standardized mean difference (SMD)
between exposed and reference groups across all studies using random
effects models. We conducted sensitivity analyses restricted to studies
using the same outcome assessment and having drinking water fluoride as
the only exposure. Cochran test for heterogeneity between studies,
Begg’s funnel plot and Egger test to assess publication bias were
performed. Meta-regressions to explore sources of variation in mean
differences among the studies were conducted.
Results: The standardized weighted mean difference in IQ score between
exposed and reference populations was -0.45 (95% CI -0.56 to -0.35)
using a random-effects model. Thus, children in high fluoride areas had
significantly lower IQ scores than those who lived in low fluoride
areas. Subgroup and sensitivity analyses also indicated inverse
associations, although the substantial heterogeneity did not appear to
decrease.
Conclusions: The results support the possibility of an adverse effect
of high fluoride exposure on children’s neurodevelopment. Future
research should include detailed individual-level information on
prenatal exposure, neurobehavioral performance, and covariates for
adjustment.
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