| Literature DB >> 33323426 |
A E Ades1, Elizabeth B Brickley2, Neal Alexander2, David Brown3, Thomas Jaenisch4, Demócrito de Barros Miranda-Filho5, Moritz Pohl6, Kerstin D Rosenberger4, Antoni Soriano-Arandes7, Claire Thorne8, Ricardo Arraes de Alencar Ximenes5, Thalia Velho Barreto de Araújo5, Vivian I Avelino-Silva9, Sarah Esperanza Bethencourt Castillo10, Victor Hugo Borja Aburto11, Patrícia Brasil12, Celia D C Christie13, Wayner Vieira de Souza14, Jose Eduardo Gotuzzo H15, Bruno Hoen16,17, Marion Koopmans18, Celina Maria Turchi Martelli14, Mauro Martins Teixeira19, Ernesto T A Marques14,20, Maria Consuelo Miranda21, Ulisses Ramos Montarroyos22, Maria Elisabeth Moreira23, J Glenn Morris24, Barry Rockx18, Paola Mariela Saba Villarroel25, Carmen Soria Segarra26,27, Adriana Tami10,28, Marília Dalva Turchi29, Carlo Giaquinto30, Xavier de Lamballerie31, Annelies Wilder-Smith32.
Abstract
INTRODUCTION: Zika virus (ZIKV) infection in pregnancy has been associated with microcephaly and severe neurological damage to the fetus. Our aim is to document the risks of adverse pregnancy and birth outcomes and the prevalence of laboratory markers of congenital infection in deliveries to women experiencing ZIKV infection during pregnancy, using data from European Commission-funded prospective cohort studies in 20 centres in 11 countries across Latin America and the Caribbean. METHODS AND ANALYSIS: We will carry out a centre-by-centre analysis of the risks of adverse pregnancy and birth outcomes, comparing women with confirmed and suspected ZIKV infection in pregnancy to those with no evidence of infection in pregnancy. We will document the proportion of deliveries in which laboratory markers of congenital infection were present. Finally, we will investigate the associations of trimester of maternal infection in pregnancy, presence or absence of maternal symptoms of acute ZIKV infection and previous flavivirus infections with adverse outcomes and with markers of congenital infection. Centre-specific estimates will be pooled using a two-stage approach. ETHICS AND DISSEMINATION: Ethical approval was obtained at each centre. Findings will be presented at international conferences and published in peer-reviewed open access journals and discussed with local public health officials and representatives of the national Ministries of Health, Pan American Health Organization and WHO involved with ZIKV prevention and control activities. © Author(s) (or their employer(s)) 2020. Re-use permitted under CC BY. Published by BMJ.Entities:
Keywords: epidemiology; paediatric infectious disease & immunisation; public health
Mesh:
Year: 2020 PMID: 33323426 PMCID: PMC7745317 DOI: 10.1136/bmjopen-2019-035307
Source DB: PubMed Journal: BMJ Open ISSN: 2044-6055 Impact factor: 2.692
Design of an idealised prospective vertical transmission study
| Maternal infection status | ||||
| MIP | No MIP | |||
| Congenital Infection Status | congenital infection | Adverse outcomes | A | 0 |
| No adverse outcomes | B | 0 | ||
| No congenital infection | Adverse outcomes | C | E | |
| No adverse outcomes | D | F | ||
The vertical transmission rate is estimated by (A+B)/ (A+B+C+D). The rate of adverse outcomes conditional on congenital infection is A/(A+B). This can be compared with the rate of adverse outcomes in newborns with no congenital infection, C/(C+D), who form a control group (Paediatric control group) to account for potential confounders associated with maternal infection. An overall, non-conditional estimate of the adverse eventrate is (A+C)/(A+B+C+D). Follow-up of births to women with no MIP creates a second control group (maternal control group), in which the rate of adverse outcomes, E/(E+F), can be compared with the rate in births with no congenital infection to womenwith MIP. Estimated effects of MIP based on the maternal control group are vulnerable to confounding by factors associated with MIP. Some cells are set to zero as there can be no congenital infection without MIP.
MIP, maternal infection in pregnancy.
Scheme for a generic analysis of risks of adverse outcomes by prospectively ascertained MIP status
| Centre | MIP | |||
| Confirmed | Suspected | No Evidence of MIP | No MIP | |
| Symptom 1 | ||||
| Symptom 2 | ||||
| Symptom 3 | ||||
| : | ||||
| No symptoms | ||||
| Total | ||||
Presence or absence of fetal and neonatal signs or symptoms (eg, microcephaly, brain calcifications, arthrogryposis) and other potentially Zika-related outcomes (eg, fetal loss) in the different MIP groups will be compared.
MIP, maternal infection in pregnancy.
Scheme for generic analysis of markers of congenital infection by prospectively ascertained MIP status
| Centre | MIP | |||
| Confirmed | Suspected | No Evidence of MIP | No MIP | |
| Both laboratory and clinical markers of congenital infection | ||||
| Only laboratory markers of congenital infection | ||||
| Only clinical markers of congenital infection | ||||
| No markers of congenital infection | ||||
| Not tested | ||||
| Total | ||||
Markers of congenital infection may include laboratory markers, clinical markers, such as microcephaly or both combined.
MIP, maternal infection in pregnancy.