Persistence of Zika Virus After Birth: Clinical, Virological, Neuroimaging, and Neuropathological Documentation in a 5-Month Infant With Congenital Zika Syndrome

被引:28
作者
Chimelli, Leila [1 ,2 ]
Pone, Sheila Moura [3 ]
Avvad-Portari, Elyzabeth [4 ]
Meira Vasconcelos, Zilton Farias [5 ]
Zin, Andrea Araujo [5 ]
Cunha, Daniela Prado [5 ]
Thompson, Nathalia Raposo [3 ]
Lopes Moreira, Maria Elisabeth [5 ]
Wiley, Clayton A. [6 ]
da Silva Pone, Marcos Vinicius [3 ]
机构
[1] State Inst Brain, Neuropathol Lab, Rua Resende 156, BR-20231092 Rio De Janeiro, RJ, Brazil
[2] Univ Fed Rio de Janeiro, Rio de Janeiro, Brazil
[3] Oswaldo Cruz Fdn Fiocruz, Natl Inst Women Children & Adolescents Hlth Ferna, Pediat Infect Dis, Rio De Janeiro, Brazil
[4] Oswaldo Cruz Fdn Fiocruz, Natl Inst Women Children & Adolescents Hlth Ferna, Pathol, Rio De Janeiro, Brazil
[5] Oswaldo Cruz Fdn Fiocruz, Natl Inst Women Children & Adolescents Hlth Ferna, Clin Res Unit, Rio De Janeiro, Brazil
[6] UPMC Presbiterian Hosp, Div Neuropathol, Pittsburgh, PA USA
关键词
Arthrogryposis; Calcification; Hydrocephalus; Microcephaly; Neuropathology; RT-qPCR; Zika virus; INFECTION; POSTMORTEM; BRAIN;
D O I
10.1093/jnen/nlx116
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
During the Zika epidemic in Brazil, a baby was born at term with microcephaly and arthrogryposis. The mother had Zika symptoms at 10 weeks of gestation. At 17 weeks, ultrasound showed cerebral malformation and ventriculomegaly. At 24 weeks, the amniotic fluid contained ZIKV RNA and at birth, placenta and maternal blood were also positive using RT-qPCR. At birth the baby urine contained ZIKV RNA, whereas CSF at birth and urine at 17 days did not. Seizures started at 6 days. EEG was abnormal and CT scan showed cerebral atrophy, calcifications, lissencephaly, ventriculomegaly, and cerebellar hypoplasia. Bacterial sepsis at 2 months was treated. A sudden increase in head circumference occurred at 4 months necessitating ventricle-peritoneal shunt placement. At 5 months, the infant died with sepsis due to bacterial meningitis. Neuropathological findings were as severe as some of those found in neonates who died soon after birth, including hydrocephalus, destructive lesions/calcification, gliosis, abnormal neuronal migration, dysmaturation of nerve cells, hypomyelination, loss of descending axons, and spinal motor neurons. ZIKV RNA was detected only in frozen brain tissue using RT-qPCR, but infected cells were not detected by in situ hybridization. Progressive gliosis and microgliosis in the midbrain may have contributed to aqueduct compression and subsequent hydrocephalus. The etiology of progressive disease after in utero infection is not clear and requires investigation.
引用
收藏
页码:193 / 198
页数:6
相关论文
共 16 条
  • [1] Zika Virus Persistence in the Central Nervous System and Lymph Nodes of Rhesus Monkeys
    Aid, Malika
    Abbink, Peter
    Larocca, Rafael A.
    Boyd, Michael
    Nityanandam, Ramya
    Nanayakkara, Ovini
    Martinot, Amanda J.
    Moseley, Edward T.
    Blass, Eryn
    Borducchi, Erica N.
    Chandrashekar, Abishek
    Brinkman, Amanda L.
    Molloy, Katherine
    Jetton, David
    Tartaglia, Lawrence J.
    Liu, Jinyan
    Best, Katharine
    Perelson, Alan S.
    De la Barrera, Rafael A.
    Lewis, Mark G.
    Barouch, Dan H.
    [J]. CELL, 2017, 169 (04) : 610 - 620
  • [2] Zika Virus RNA Replication and Persistence in Brain and Placental Tissue
    Bhatnagar, Julu
    Rabeneck, Demi B.
    Martines, Roosecelis B.
    Reagan-Steiner, Sarah
    Ermias, Yokabed
    Estetter, Lindsey B. C.
    Suzuki, Tadaki
    Ritter, Jana
    Keating, M. Kelly
    Hale, Gillian
    Gary, Joy
    Muehlenbachs, Atis
    Lambert, Amy
    Lanciotti, Robert
    Oduyebo, Titilope
    Meaney-Delman, Dana
    Bolanos, Fernando
    Saad, Edgar Alberto Parra
    Shieh, Wun-Ju
    Zaki, Sherif R.
    [J]. EMERGING INFECTIOUS DISEASES, 2017, 23 (03) : 405 - 414
  • [3] Zika Virus Infection in Pregnant Women in Rio de Janeiro
    Brasil, P.
    Pereira, J. P., Jr.
    Moreira, M. E.
    Ribeiro Nogueira, R. M.
    Damasceno, L.
    Wakimoto, M.
    Rabello, R. S.
    Valderramos, S. G.
    Halai, U. -A.
    Salles, T. S.
    Zin, A. A.
    Horovitz, D.
    Daltro, P.
    Boechat, M.
    Gabaglia, C. Raja
    Carvalho de Sequeira, P.
    Pilotto, J. H.
    Medialdea-Carrera, R.
    Cotrim da Cunha, D.
    Abreu de Carvalho, L. M.
    Pone, M.
    Machado Siqueira, A.
    Calvet, G. A.
    Rodrigues Baiao, A. E.
    Neves, E. S.
    Nassar de Carvalho, P. R.
    Hasue, R. H.
    Marschik, P. B.
    Einspieler, C.
    Janzen, C.
    Cherry, J. D.
    Bispo de Filippis, A. M.
    Nielsen-Saines, K.
    [J]. NEW ENGLAND JOURNAL OF MEDICINE, 2016, 375 (24) : 2321 - 2334
  • [4] The spectrum of neuropathological changes associated with congenital Zika virus infection
    Chimelli, Leila
    Melo, Adriana S. O.
    Avvad-Portari, Elyzabeth
    Wiley, Clayton A.
    Camacho, Aline H. S.
    Lopes, Vania S.
    Machado, Heloisa N.
    Andrade, Cecilia V.
    Dock, Dione C. A.
    Moreira, Maria Elisabeth
    Tovar-Moll, Fernanda
    Oliveira-Szejnfeld, Patricia S.
    Carvalho, Angela C. G.
    Ugarte, Odile N.
    Batista, Alba G. M.
    Amorim, Melania M. R.
    Melo, Fabiana O.
    Ferreira, Thales A.
    Marinho, Jacqueline R. L.
    Azevedo, Girlene S.
    Leal, Jeime I. B. F.
    Madeiro da Costa, Rodrigo F.
    Rehen, Stevens
    Arruda, Monica B.
    Brindeiro, Rodrigo M.
    Delvechio, Rodrigo
    Aguiar, Renato S.
    Tanuri, Amilcar
    [J]. ACTA NEUROPATHOLOGICA, 2017, 133 (06) : 983 - 999
  • [5] Zika Virus Infection with Prolonged Maternal Viremia and Fetal Brain Abnormalities
    Driggers, R. W.
    Ho, C. -Y.
    Korhonen, E. M.
    Kuivanen, S.
    Jaaskelainen, A. J.
    Smura, T.
    Rosenberg, A.
    Hill, D. A.
    DeBiasi, R. L.
    Vezina, G.
    Timofeev, J.
    Rodriguez, F. J.
    Levanov, L.
    Razak, J.
    Iyengar, P.
    Hennenfent, A.
    Kennedy, R.
    Lanciotti, R.
    du Plessis, A.
    Vapalahti, O.
    [J]. NEW ENGLAND JOURNAL OF MEDICINE, 2016, 374 (22) : 2142 - 2151
  • [6] Bridging Knowledge Gaps to Understand HowZika Virus Exposure and Infection Affect Child Development
    Kapogiannis, Bill G.
    Chakhtoura, Nahida
    Hazra, Rohan
    Spong, Catherine Y.
    [J]. JAMA PEDIATRICS, 2017, 171 (05) : 478 - 485
  • [7] Genetic and serologic properties of zika virus associated with an epidemic, Yap State, Micronesia, 2007
    Lanciotti, Robert S.
    Kosoy, Olga L.
    Laven, Janeen J.
    Velez, Jason O.
    Lambert, Amy J.
    Johnson, Alison J.
    Stanfield, Stephanie M.
    Duffy, Mark R.
    [J]. EMERGING INFECTIOUS DISEASES, 2008, 14 (08) : 1232 - 1239
  • [8] Characteristics of Dysphagia in Infants with Microcephaly Caused by Congenital Zika Virus Infection, Brazil, 2015
    Leal, Mariana C.
    van der Linden, Vanessa
    Bezerra, Thiago P.
    de Valois, Luciana
    Borges, Adriana C. G.
    Antunes, Margarida M. C.
    Brandt, Katia G.
    Moura, Catharina X.
    Rodrigues, Laura C.
    Ximenes, Coeli R.
    [J]. EMERGING INFECTIOUS DISEASES, 2017, 23 (08) : 1253 - 1259
  • [9] Lucchese G, 2016, AUTOIMMUN REV, V15, P801, DOI 10.1016/j.autrev.2016.03.020
  • [10] Characterizing the Pattern of Anomalies in Congenital Zika Syndrome for Pediatric Clinicians
    Moore, Cynthia A.
    Staples, J. Erin
    Dobyns, William B.
    Pessoa, Andre
    Ventura, Camila V.
    Da Fonseca, Eduardo Borges
    Ribeiro, Erlane Marques
    Ventura, Liana O.
    Nogueira Neto, Norberto
    Arena, J. Fernando
    Rasmussen, Sonja A.
    [J]. JAMA PEDIATRICS, 2017, 171 (03) : 288 - 295