Epilepsy surveillance in normocephalic children with and without prenatal Zika virus exposure
Karen Blackmon1,2, Randall Waechter2,3, Barbara Landon2
1Mayo Clinic, Department of Psychiatry and Psychology, Jacksonville, Florida, United States of America.
Insights
Prenatal Zika virus (ZIKV) exposure may modestly increase epilepsy risk in normocephalic children. Early epilepsy screening is recommended even without microcephaly, aiding surveillance in resource-limited settings.
Area of Science:
- Neurology
- Infectious Diseases
- Pediatrics
Background:
- Congenital Zika Syndrome (CZS) and microcephaly are known risk factors for epilepsy.
- Epilepsy risk in normocephalic children with prenatal Zika virus (ZIKV) exposure remains unclear.
- Early identification and management of epilepsy are crucial for affected children.
Purpose of the Study:
- To assess the incidence of epilepsy in normocephalic children exposed prenatally to ZIKV (EC).
- To compare epilepsy rates in EC with normocephalic unexposed children (UC).
- To evaluate the utility of epilepsy screening in resource-limited settings.
Main Methods:
- Prospective cohort study comparing EC and UC at one year of age.
- ZIKV exposure confirmed via maternal serum IgG antibodies using a plasmonic-gold platform.
- Epilepsy screening included a pediatric questionnaire and video electroencephalography (vEEG) interpreted by blinded epileptologists.
Main Results:
- Epilepsy screens were positive in 2/71 EC (incidence rate: 0.028) and 0/71 UC.
- Both positive cases involved focal seizures, diagnosed clinically, and responded well to carbamazepine.
- Modestly elevated epilepsy rates were observed in EC compared to UC.
Conclusions:
- Epilepsy risk appears modestly elevated in normocephalic children with prenatal ZIKV exposure.
- Epilepsy screening is valuable in children with congenital ZIKV exposure, irrespective of microcephaly.
- Findings support the use of epilepsy screening in larger epidemiological studies and resource-limited settings.
Abstract:
Children with Congenital Zika Syndrome and microcephaly are at high risk for epilepsy; however, the risk is unclear in normocephalic children with prenatal Zika virus (ZIKV) exposure [Exposed Children (EC)]. In this prospective cohort study, we performed epilepsy screening in normocephalic EC alongside a parallel group of normocephalic unexposed children [Unexposed Children (UC)]. We compared the incidence rate of epilepsy among EC and UC at one year of life to global incidence rates. Pregnant women were recruited from public health centers during the ZIKV outbreak in Grenada, West Indies and assessed for prior ZIKV infection using a plasmonic-gold platform that measures IgG antibodies in serum. Normocephalic children born to mothers with positive ZIKV results during pregnancy were classified as EC and those born to mothers with negative ZIKV results during and after pregnancy were classified as UC. Epilepsy screening procedures included a pediatric epilepsy screening questionnaire and video electroencephalography (vEEG). vEEG was collected using a multi-channel microEEG® system for a minimum of 20 minutes along with video recording of participant behavior time-locked to the EEG. vEEGs were interpreted independently by two pediatric epileptologists, who were blinded to ZIKV status, via telemedicine platform. Positive screening cases were referred to a local pediatrician for an epilepsy diagnostic evaluation. Epilepsy screens were positive in 2/71 EC (IR: 0.028; 95% CI: 0.003-0.098) and 0/71 UC. In both epilepsy-positive cases, questionnaire responses and interictal vEEGs were consistent with focal, rather than generalized, seizures. Both children met criteria for a clinical diagnosis of epilepsy and good seizure control was achieved with carbamazepine. Our results indicate that epilepsy rates are modestly elevated in EC. Given our small sample size, results should be considered preliminary. They support the use of epilepsy screening procedures in larger epidemiological studies of children with congenital ZIKV exposure, even in the absence of microcephaly, and provide guidance for conducting epilepsy surveillance in resource limited settings.
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