Literature DB >> 27274588

Defining the syndrome associated with congenital Zika virus infection.

Anthony Costello1, Tarun Dua2, Pablo Duran3, Metin Gülmezoglu4, Olufemi T Oladapo4, William Perea5, João Pires6, Pilar Ramon-Pardo7, Nigel Rollins1, Shekhar Saxena2.   

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Year:  2016        PMID: 27274588      PMCID: PMC4890216          DOI: 10.2471/BLT.16.176990

Source DB:  PubMed          Journal:  Bull World Health Organ        ISSN: 0042-9686            Impact factor:   9.408


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Zika virus infection in humans is usually mild or asymptomatic. However, some babies born to women infected with Zika virus have severe neurological sequelae. An unusual cluster of cases of congenital microcephaly and other neurological disorders in the WHO Region of the Americas, led to the declaration of a public health emergency of international concern by the World Health Organization (WHO) on 1 February 2016. By 5 May 2016, reports of newborns or fetuses with microcephaly or other malformations – presumably associated with Zika virus infection – have been described in the following countries and territories: Brazil (1271 cases); Cabo Verde (3 cases); Colombia (7 cases); French Polynesia (8 cases); Martinique (2 cases) and Panama (4 cases). Additional cases were also reported in Slovenia and the United States of America, in which the mothers had histories of travel to Brazil during their pregnancies. Zika virus is an intensely neurotropic virus that particularly targets neural progenitor cells but also – to a lesser extent – neuronal cells in all stages of maturity. Viral cerebritis can disrupt cerebral embryogenesis and result in microcephaly and other neurological abnormalities. Zika virus has been isolated from the brains and cerebrospinal fluid of neonates born with congenital microcephaly and identified in the placental tissue of mothers who had had clinical symptoms consistent with Zika virus infection during their pregnancies.– The spatiotemporal association of cases of microcephaly with the Zika virus outbreak and the evidence emerging from case reports and epidemiologic studies, has led to a strong scientific consensus that Zika virus is implicated in congenital abnormalities., Existing evidence and unpublished data shared with WHO highlight the wider range of congenital abnormalities probably associated with the acquisition of Zika virus infection in utero. In addition to microcephaly, other manifestations include craniofacial disproportion, spasticity, seizures, irritability and brainstem dysfunction including feeding difficulties, ocular abnormalities and findings on neuroimaging such as calcifications, cortical disorders and ventriculomegaly.–,– Similar to other infections acquired in utero, cases range in severity; some babies have been reported to have neurological abnormalities with a normal head circumference. Preliminary data from Colombia and Panama also suggest that the genitourinary, cardiac and digestive systems can be affected (Pilar Ramon-Pardo, unpublished data). The range of abnormalities seen and the likely causal relationship with Zika virus infection suggest the presence of a new congenital syndrome. WHO has set in place a process for defining the spectrum of this syndrome. The process focuses on mapping and analysing the clinical manifestations encompassing the neurological, hearing, visual and other abnormalities, and neuroimaging findings. WHO will need good antenatal and postnatal histories and follow-up data, sound laboratory results, exclusion of other etiologies and analysis of imaging findings to properly delineate this syndrome. The scope of the syndrome will expand as further information and longer follow-up of affected children become available. The surveillance system that was established as part of the epidemic response to the outbreak initially called only for the reporting of microcephaly cases. This surveillance guidance has been expanded to include a spectrum of congenital malformations that could be associated with intrauterine Zika virus infection. Effective sharing of data is needed to define this syndrome. A few reports have described a wide range of abnormalities,–,– but most data related to congenital manifestations of Zika infection remain unpublished. Global health organizations and research funders have committed to sharing data and results relevant to the Zika epidemic as openly as possible. Further analysis of data from cohorts of pregnant women with Zika virus infection are needed to understand all outcomes of Zika virus infection in pregnancy. Thirty-seven countries and territories in the Region of the Americas now report mosquito-borne transmission of Zika virus and risk of sexual transmission. With such spread, it is possible that many thousands of infants will incur moderate to severe neurological disabilities. Therefore, routine surveillance systems and research protocols need to include a larger population than simply children with microcephaly. The health system response, including psychosocial services for women, babies and affected families will need to be fully resourced. The Zika virus public health emergency is distinct because of its long-term health consequences and social impact. A coordinated approach to data sharing, surveillance and research is needed. WHO has thus started coordinating efforts to define the congenital Zika virus syndrome and issues an open invitation to all partners to join in this effort.
  10 in total

1.  Zika Virus and Birth Defects--Reviewing the Evidence for Causality.

Authors:  Sonja A Rasmussen; Denise J Jamieson; Margaret A Honein; Lyle R Petersen
Journal:  N Engl J Med       Date:  2016-04-13       Impact factor: 91.245

2.  Zika Virus Associated with Microcephaly.

Authors:  Jernej Mlakar; Misa Korva; Nataša Tul; Mara Popović; Mateja Poljšak-Prijatelj; Jerica Mraz; Marko Kolenc; Katarina Resman Rus; Tina Vesnaver Vipotnik; Vesna Fabjan Vodušek; Alenka Vizjak; Jože Pižem; Miroslav Petrovec; Tatjana Avšič Županc
Journal:  N Engl J Med       Date:  2016-02-10       Impact factor: 91.245

3.  Zika Virus Infects Human Cortical Neural Progenitors and Attenuates Their Growth.

Authors:  Hengli Tang; Christy Hammack; Sarah C Ogden; Zhexing Wen; Xuyu Qian; Yujing Li; Bing Yao; Jaehoon Shin; Feiran Zhang; Emily M Lee; Kimberly M Christian; Ruth A Didier; Peng Jin; Hongjun Song; Guo-Li Ming
Journal:  Cell Stem Cell       Date:  2016-03-04       Impact factor: 24.633

4.  Initial Description of the Presumed Congenital Zika Syndrome.

Authors:  Demócrito de Barros Miranda-Filho; Celina Maria Turchi Martelli; Ricardo Arraes de Alencar Ximenes; Thalia Velho Barreto Araújo; Maria Angela Wanderley Rocha; Regina Coeli Ferreira Ramos; Rafael Dhalia; Rafael Freitas de Oliveira França; Ernesto Torres de Azevedo Marques Júnior; Laura Cunha Rodrigues
Journal:  Am J Public Health       Date:  2016-04       Impact factor: 9.308

5.  Congenital cerebral malformations and dysfunction in fetuses and newborns following the 2013 to 2014 Zika virus epidemic in French Polynesia.

Authors:  Marianne Besnard; Dominique Eyrolle-Guignot; Prisca Guillemette-Artur; Stéphane Lastère; Frédérique Bost-Bezeaud; Ludivine Marcelis; Véronique Abadie; Catherine Garel; Marie-Laure Moutard; Jean-Marie Jouannic; Flore Rozenberg; Isabelle Leparc-Goffart; Henri-Pierre Mallet
Journal:  Euro Surveill       Date:  2016

6.  Association between Zika virus and microcephaly in French Polynesia, 2013-15: a retrospective study.

Authors:  Simon Cauchemez; Marianne Besnard; Priscillia Bompard; Timothée Dub; Prisca Guillemette-Artur; Dominique Eyrolle-Guignot; Henrik Salje; Maria D Van Kerkhove; Véronique Abadie; Catherine Garel; Arnaud Fontanet; Henri-Pierre Mallet
Journal:  Lancet       Date:  2016-03-16       Impact factor: 79.321

7.  Zika Virus Infection in Pregnant Women in Rio de Janeiro.

Authors:  Patrícia Brasil; José P Pereira; M Elisabeth Moreira; Rita M Ribeiro Nogueira; Luana Damasceno; Mayumi Wakimoto; Renata S Rabello; Stephanie G Valderramos; Umme-Aiman Halai; Tania S Salles; Andrea A Zin; Dafne Horovitz; Pedro Daltro; Marcia Boechat; Claudia Raja Gabaglia; Patrícia Carvalho de Sequeira; José H Pilotto; Raquel Medialdea-Carrera; Denise Cotrim da Cunha; Liege M Abreu de Carvalho; Marcos Pone; André Machado Siqueira; Guilherme A Calvet; Ana E Rodrigues Baião; Elizabeth S Neves; Paulo R Nassar de Carvalho; Renata H Hasue; Peter B Marschik; Christa Einspieler; Carla Janzen; James D Cherry; Ana M Bispo de Filippis; Karin Nielsen-Saines
Journal:  N Engl J Med       Date:  2016-03-04       Impact factor: 91.245

8.  Zika Virus Infection with Prolonged Maternal Viremia and Fetal Brain Abnormalities.

Authors:  Rita W Driggers; Cheng-Ying Ho; Essi M Korhonen; Suvi Kuivanen; Anne J Jääskeläinen; Teemu Smura; Avi Rosenberg; D Ashley Hill; Roberta L DeBiasi; Gilbert Vezina; Julia Timofeev; Fausto J Rodriguez; Lev Levanov; Jennifer Razak; Preetha Iyengar; Andrew Hennenfent; Richard Kennedy; Robert Lanciotti; Adre du Plessis; Olli Vapalahti
Journal:  N Engl J Med       Date:  2016-03-30       Impact factor: 91.245

9.  Ocular Findings in Infants With Microcephaly Associated With Presumed Zika Virus Congenital Infection in Salvador, Brazil.

Authors:  Bruno de Paula Freitas; João Rafael de Oliveira Dias; Juliana Prazeres; Gielson Almeida Sacramento; Albert Icksang Ko; Maurício Maia; Rubens Belfort
Journal:  JAMA Ophthalmol       Date:  2016-05-01       Impact factor: 7.389

10.  Data sharing in public health emergencies: a call to researchers.

Authors:  Christopher Dye; Kidist Bartolomeos; Vasee Moorthy; Marie Paule Kieny
Journal:  Bull World Health Organ       Date:  2016-03-01       Impact factor: 9.408

  10 in total
  54 in total

Review 1.  A review of Zika virus infections in pregnancy and implications for antenatal care in Singapore.

Authors:  Harvard Zhenjia Lin; Paul Anantharajah Tambyah; Eu Leong Yong; Arijit Biswas; Shiao-Yng Chan
Journal:  Singapore Med J       Date:  2017-04       Impact factor: 1.858

2.  Science in Emergency Response at CDC: Structure and Functions.

Authors:  John Iskander; Dale A Rose; Neelam D Ghiya
Journal:  Am J Public Health       Date:  2017-09       Impact factor: 9.308

Review 3.  Zika in the Americas, year 2: What have we learned? What gaps remain? A report from the Global Virus Network.

Authors:  Matthew T Aliota; Leda Bassit; Shelton S Bradrick; Bryan Cox; Mariano A Garcia-Blanco; Christina Gavegnano; Thomas C Friedrich; Thaddeus G Golos; Diane E Griffin; Andrew D Haddow; Esper G Kallas; Uriel Kitron; Marc Lecuit; Diogo M Magnani; Caroline Marrs; Natalia Mercer; Edward McSweegan; Lisa F P Ng; David H O'Connor; Jorge E Osorio; Guilherme S Ribeiro; Michael Ricciardi; Shannan L Rossi; George Saade; Raymond F Schinazi; Geraldine O Schott-Lerner; Chao Shan; Pei-Yong Shi; David I Watkins; Nikos Vasilakis; Scott C Weaver
Journal:  Antiviral Res       Date:  2017-06-06       Impact factor: 5.970

4.  Seroprevalence, risk factor, and spatial analyses of Zika virus infection after the 2016 epidemic in Managua, Nicaragua.

Authors:  José Victor Zambrana; Fausto Bustos Carrillo; Raquel Burger-Calderon; Damaris Collado; Nery Sanchez; Sergio Ojeda; Jairo Carey Monterrey; Miguel Plazaola; Brenda Lopez; Sonia Arguello; Douglas Elizondo; William Aviles; Josefina Coloma; Guillermina Kuan; Angel Balmaseda; Aubree Gordon; Eva Harris
Journal:  Proc Natl Acad Sci U S A       Date:  2018-08-27       Impact factor: 11.205

Review 5.  Sleep in Children with Congenital Malformations of the Central Nervous System.

Authors:  Jacqueline F Yates; Matthew M Troester; David G Ingram
Journal:  Curr Neurol Neurosci Rep       Date:  2018-05-23       Impact factor: 5.081

6.  Machine learning and deep learning techniques to support clinical diagnosis of arboviral diseases: A systematic review.

Authors:  Sebastião Rogério da Silva Neto; Thomás Tabosa Oliveira; Igor Vitor Teixeira; Samuel Benjamin Aguiar de Oliveira; Vanderson Souza Sampaio; Theo Lynn; Patricia Takako Endo
Journal:  PLoS Negl Trop Dis       Date:  2022-01-13

7.  Outcomes of Congenital Zika Disease Depend on Timing of Infection and Maternal-Fetal Interferon Action.

Authors:  Jinling Chen; Yuejin Liang; Panpan Yi; Lanman Xu; Hal K Hawkins; Shannan L Rossi; Lynn Soong; Jiyang Cai; Ramkumar Menon; Jiaren Sun
Journal:  Cell Rep       Date:  2017-11-07       Impact factor: 9.423

Review 8.  Zika Virus Infection in Pregnancy: Maternal, Fetal, and Neonatal Considerations.

Authors:  Carmen D Zorrilla; Inés García García; Lourdes García Fragoso; Alberto De La Vega
Journal:  J Infect Dis       Date:  2017-12-16       Impact factor: 5.226

9.  A systems biology approach to predictive developmental neurotoxicity of a larvicide used in the prevention of Zika virus transmission.

Authors:  Karine Audouze; Olivier Taboureau; Philippe Grandjean
Journal:  Toxicol Appl Pharmacol       Date:  2018-02-21       Impact factor: 4.219

10.  A live-attenuated Zika virus vaccine candidate induces sterilizing immunity in mouse models.

Authors:  Chao Shan; Antonio E Muruato; Bruno T D Nunes; Huanle Luo; Xuping Xie; Daniele B A Medeiros; Maki Wakamiya; Robert B Tesh; Alan D Barrett; Tian Wang; Scott C Weaver; Pedro F C Vasconcelos; Shannan L Rossi; Pei-Yong Shi
Journal:  Nat Med       Date:  2017-04-10       Impact factor: 87.241

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