Infant neurodevelopment and behavior in Guadeloupe after lead exposure and Zika maternal infection during pregnancy
M Kadawathagedara1, G Muckle2, P Quénel1
1Univ Rennes, EHESP, Inserm, IRSET UMR_S 1085, F-35000 Rennes, France.
Insights
Prenatal lead exposure and Zika virus (ZIKV) infection in mothers are linked to infant neurodevelopmental delays. Boys showed particular vulnerability to lead, while ZIKV impacted motor skills and behavior.
Area of Science:
- Neuroscience
- Environmental Health
- Infectious Diseases
Background:
- Prenatal lead exposure is a known neurotoxin.
- Zika virus (ZIKV) can affect the central nervous system.
Purpose of the Study:
- To investigate if maternal Zika virus (ZIKV) infection modifies the neurodevelopmental effects of prenatal lead exposure in infants at 18 months.
- To assess infant development and behavior following prenatal exposure to lead and/or ZIKV.
Main Methods:
- A cohort of 297 pregnant women during the 2016 ZIKV epidemic in Guadeloupe.
- Measured blood lead levels and ZIKV status.
- Assessed infant neurodevelopment and behavior at 18 months using Ages and Stages Questionnaire (ASQ) and behavioral questionnaires.
- Analyzed associations using multivariate linear regressions.
Main Results:
- Prenatal lead exposure correlated with neurodevelopmental delays (lower ASQ scores in total, fine motor, and problem-solving domains), particularly in boys.
- ZIKV infection was linked to lower fine motor scores and increased hyperactivity, opposition, and aggression.
- Some interactions between lead exposure and ZIKV status were observed for personal-social and inattention scores, with some effects diminishing when excluding infants with microcephaly.
Conclusions:
- Confirms lead's adverse neurodevelopmental effects in infancy, especially in boys.
- Suggests ZIKV infection during pregnancy may adversely affect fine motor function and behavior.
- No strong evidence of interaction, but both factors may impact fine motor skills.
Background:
Prenatal lead exposure is known to have neurotoxic effects on the developing fetus, while some viral infections may have a tropism for the central nervous system. Our objective was to study whether the effects of prenatal lead exposure on infant development and behaviors at 18 months of age are modified by the occurrence of a maternal infection to Zika virus (ZIKV) during pregnancy.
Methods:
During the ZIKV epidemic in Guadeloupe in 2016 a cohort of pregnant women was set up. Blood samples (pregnancy, childbirth and cord) (n = 297) enabled us to measure blood lead levels aimed to determine prenatal lead exposure and the likelihood of maternal infection during pregnancy (ZIKV status + vs -). The 18 months "Ages and Stages Questionnaire" (ASQ) was used to generate scores for global development, fine and gross motor skills, communication, problem solving, and personal-social skills. The questions from a longitudinal cohort study conducted in Canada (Québec) were used to generate hyperactivity, opposition, inattention and physical aggression scores. Associations were tested by multivariate linear regressions.
Results:
Prenatal lead exposure was associated with delays in neurodevelopment at 18 months, reflected by lower scores in ASQ totals, and in the fine motor and problem-solving domains. Some of these associations appeared to be sex-specific, observed almost exclusively in boys (ASQ total, fine motor and personal-social scores). Prenatal lead exposure was not associated with behavioral scores. ZIKV infection during pregnancy was associated with a lower fine motor ASQ score, and higher scores for hyperactivity, opposition and physical aggression. Significant interaction between prenatal lead exposure and ZIKV status was observed with a lower personal-social score in ZIKV (-) only, and for hyperactivity and inattention scores, though some of these interactions (ASQ personal-social score, inattention score) were no longer significant when children with microcephaly were excluded from the analyses.
Discussion/Conclusion:
Our study confirms previous findings of associations between prenatal exposure to lead at low levels and adverse neurodevelopmental outcomes during infancy and the particular vulnerability of boys. It suggests associations between ZIKV infection during pregnancy and adverse effects on a number of neurodevelopmental functions (fine motor function) and behaviors (opposition, hyperactivity), that need to be confirmed at later age. There is no strong evidence of interaction between ZIKV infection and lead exposure but both prenatal risk factors may affect fine motor function.


