Neurodevelopment in Children Exposed to Zika Virus: What Are the Consequences for Children Who Do Not Present with
Paula Fabiana Sobral da Silva1,2, Sophie Helena Eickmann3, Ricardo Arraes de Alencar Ximenes1
1Pós-Graduação em Ciências da Saúde, Universidade de Pernambuco, Recife 50100-010, Brazil.
Insights
Zika virus (ZIKV) exposure in pregnancy did not significantly increase neurodevelopmental delays in children born without microcephaly. However, abnormal neurological exams in ZIKV-exposed infants may predict later developmental delays.
Area of Science:
- Neuroscience
- Infectious Diseases
- Developmental Pediatrics
Background:
- The link between Zika virus (ZIKV) and microcephaly is established, but later developmental outcomes in unexposed infants are less understood.
- Prenatal ZIKV exposure's impact on neurodevelopment in children without microcephaly requires further investigation.
Purpose of the Study:
- To assess the effect of prenatal ZIKV exposure on neuropsychomotor development in children born without microcephaly.
- To identify potential predictors of neurodevelopmental delays in ZIKV-exposed infants.
Main Methods:
- Evaluated 274 children (235 ZIKV-exposed, 39 controls) using the Bayley-III Scales of Infant and Toddler Development (BSIDIII) and neurological examinations.
- Compared neurodevelopmental outcomes between ZIKV-exposed and unexposed children up to 42 months of age.
Main Results:
- A borderline significant difference in cognition was observed (p=0.052), with mild to moderate delays in 9.4% of exposed children versus none in controls.
- No significant differences in language or motor delays were found between groups.
- Abnormal neurological examination findings in ZIKV-exposed children predicted BSIDIII developmental delays (46.7% vs. 17.8%, p=0.001).
Conclusions:
- ZIKV-exposed children without microcephaly show no considerably increased risk of neurodevelopmental impairment by 42 months.
- A subset of ZIKV-exposed children may experience cognitive delays.
- Clinical neurological examination is a valuable predictor of neurodevelopmental delays in ZIKV-exposed infants.
Abstract:
The relation of Zika virus (ZIKV) with microcephaly is well established. However, knowledge is lacking on later developmental outcomes in children with evidence of maternal ZIKV infection during pregnancy born without microcephaly. The objective of this analysis is to investigate the impact of prenatal exposure to ZIKV on neuropsychomotor development in children without microcephaly. We evaluated 274 children including 235 ZIKV exposed and 39 controls using the Bayley-III Scales of Infant and Toddler Development (BSIDIII) and neurological examination. We observed a difference in cognition with a borderline p-value (p = 0.052): 9.4% of exposed children and none of the unexposed control group had mild to moderate delays. The prevalence of delays in the language and motor domains did not differ significantly between ZIKV-exposed and unexposed children (language: 12.3% versus 12.8%; motor: 4.7% versus 2.6%). Notably, neurological examination results were predictive of neurodevelopmental delays in the BSIDIII assessments for exposed children: 46.7% of children with abnormalities on clinical neurological examination presented with delay in contrast to 17.8% among exposed children without apparent neurological abnormalities (p = 0.001). Overall, our findings suggest that relative to their unexposed peers, ZIKV-exposed children without microcephaly are not at considerably increased risk of neurodevelopmental impairment in the first 42 months of life, although a small group of children demonstrated higher frequencies of cognitive delay. It is important to highlight that in the group of exposed children, an abnormal neuroclinical examination may be a predictor of developmental delay. The article contributes to practical guidance and advances our knowledge about congenital Zika.
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