Propagation of Brazilian Zika virus strains in static and suspension cultures using Vero and BHK cells

被引:34
作者
Nikolay, Alexander [1 ]
Castilho, Leda R. [2 ]
Reichl, Udo [1 ,3 ]
Genzel, Yvonne [1 ]
机构
[1] Max Planck Inst Dynam Complex Tech Syst, Bioproc Engn, Sandtorstr 1, D-39106 Magdeburg, Germany
[2] Univ Fed Rio de Janeiro, COPPE, Cell Culture Engn Lab, Cx Postal 68502, BR-21941972 Rio De Janeiro, RJ, Brazil
[3] Otto von Guericke Univ, Bioproc Engn, Univ Pl 2, D-39106 Magdeburg, Germany
关键词
Brazilian Zika virus; BHK-21 Suspension cell line; High cell density; Perfusion process; Process intensification; RABIES VACCINE;
D O I
10.1016/j.vaccine.2017.03.018
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
The recent spread of Zika virus (ZIKV) in the Americas and the Pacific has reached alarming levels in more than 60 countries. However, relatively little is known about the disease on a virological and epidemiological level and its consequences for humans. Accordingly, a large demand for in vitro derived Brazilian ZIKV material to support in vitro and in vivo studies has arisen. However, a prompt supply of ZIKV and ZIKV antigens cannot be guaranteed as the production of this virus typically using Vero or C6/36 cell lines remains challenging. Here we present a production platform based on BHK-21 suspension (BHK-21(sus)) cells to propagate Brazilian ZIKV at larger quantities in perfusion bioreactors. Scouting experiments performed in tissue culture flasks using adherent BHK-21 and Vero cells have demonstrated similar permissivity and virus yields for four different Brazilian ZIKV isolates. The cell-specific yield of infectious virus particles varied between respective virus strains (1-48 PFU/cell), and the ZIKV isolate from the Brazilian state Pernambuco (ZIKV(PE)) showed to be a best performing isolate for both cell lines. However, infection studies of BHK-21sus cells with ZIKVPE in shake flasks resulted in poor virus replication, with a maximum titer of 8.9 x 10(3) PFU/mL. Additional RT-qPCR measurements of intracellular and extracellular viral RNA levels revealed high viral copy numbers within the cell, but poor virus release. Subsequent cultivation in a perfusion bioreactor using an alternating tangential flow filtration system (ATF) under controlled process conditions enabled cell concentrations of about 1.2 x 10(7) cells/mI, and virus titers of 3.9 x 10(7) PFU/mL. However, while the total number of infectious virus particles was increased, the cell-specific yield (3.3 PFU/cell) remained lower than determined in adherent cell lines. Nevertheless, the established perfusion process allows to provide large amounts of ZIKV material for research and is a first step towards process development for manufacturing inactivated or live-attenuated ZIKV vaccines. (C) 2017 The Author(s). Published by Elsevier Ltd.
引用
收藏
页码:3140 / 3145
页数:6
相关论文
共 21 条
[1]   Detection of yellow fever virus: a comparison of quantitative real-time PCR and plaque assay [J].
Bae, HG ;
Nitsche, A ;
Teichmann, A ;
Biel, SS ;
Niedrig, M .
JOURNAL OF VIROLOGICAL METHODS, 2003, 110 (02) :185-191
[2]   Ultrastructure of Zika virus particles in cell cultures [J].
Barreto-Vieira, Debora Ferreira ;
Barth, Ortrud Monika ;
da Silva, Marcos Alexandre Nunes ;
Santos, Carolina Cardoso ;
Santos, Aline da Silva ;
Joaquim Batista, F. Filho ;
Bispo de Filippis, Ana Maria .
MEMORIAS DO INSTITUTO OSWALDO CRUZ, 2016, 111 (08) :532-534
[3]   Guillain-Barre Syndrome outbreak associated with Zika virus infection in French Polynesia: a case-control study [J].
Cao-Lormeau, Van-Mai ;
Blake, Alexandre ;
Mons, Sandrine ;
Lastere, Stephane ;
Roche, Claudine ;
Vanhomwegen, Jessica ;
Dub, Timothee ;
Baudouin, Laure ;
Teissier, Anita ;
Larre, Philippe ;
Vial, Anne-Laure ;
Decam, Christophe ;
Choumet, Valerie ;
Halstead, Susan K. ;
Willison, Hugh J. ;
Musset, Lucile ;
Manuguerra, Jean-Claude ;
Despres, Philippe ;
Fournier, Emmanuel ;
Mallet, Henri-Pierre ;
Musso, Didier ;
Fontanet, Arnaud ;
Neil, Jean ;
Ghawche, Frederic .
LANCET, 2016, 387 (10027) :1531-1539
[4]   Probable Non-Vector-borne Transmission of Zika Virus, Colorado, USA [J].
Foy, Brian D. ;
Kobylinski, Kevin C. ;
Foy, Joy L. Chilson ;
Blitvich, Bradley J. ;
da Rosa, Amelia Travassos ;
Haddow, Andrew D. ;
Lanciotti, Robert S. ;
Tesh, Robert B. .
EMERGING INFECTIOUS DISEASES, 2011, 17 (05) :880-882
[5]   Influenza virus intracellular replication dynamics, release kinetics, and particle morphology during propagation in MDCK cells [J].
Frensing, Timo ;
Kupke, Sascha Y. ;
Bachmann, Mandy ;
Fritzsche, Susanne ;
Gallo-Ramirez, Lili E. ;
Reichl, Udo .
APPLIED MICROBIOLOGY AND BIOTECHNOLOGY, 2016, 100 (16) :7181-7192
[6]   Bioreactor concepts for cell culture-based viral vaccine production [J].
Gallo-Ramirez, Lili Esmeralda ;
Nikolay, Alexander ;
Genzel, Yvonne ;
Reichl, Udo .
EXPERT REVIEW OF VACCINES, 2015, 14 (09) :1181-1195
[7]   High cell density cultivations by alternating tangential flow (ATF) perfusion for influenza A virus production using suspension cells [J].
Genzel, Yvonne ;
Vogel, Thomas ;
Buck, Johannes ;
Behrendt, Ilona ;
Ramirez, Daniel Vazquez ;
Schiedner, Gudrun ;
Jordan, Ingo ;
Reichl, Udo .
VACCINE, 2014, 32 (24) :2770-2781
[8]  
Hierholzer J. C., 1996, P25, DOI 10.1016/B978-012465330-6/50003-8
[9]  
Janis A. M., 2016, EMERG INFECT DIS J, V22
[10]  
Kindhauser MK, 2016, B WHO