For: | Himmelsbach K, Hildt E. Identification of various cell culture models for the study of Zika virus. World J Virol 2018; 7(1): 10-20 [PMID: 29468137 DOI: 10.5501/wjv.v7.i1.10] |
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URL: | https://www.wjgnet.com/2220-3249/full/v7/i1/10.htm |
Number | Citing Articles |
1 |
Ekaterina V. Pimenova, Natalya P. Khrapova, Tatyana V. Zamarina. In vitro models for the study of Zika virus. Journal of microbiology, epidemiology and immunobiology 2020; 97(2): 159 doi: 10.36233/0372-9311-2020-97-2-159-164
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2 |
Dorjbal Dorjsuren, Richard T. Eastman, Min Jae Song, Adam Yasgar, Yuchi Chen, Kapil Bharti, Alexey V. Zakharov, Ajit Jadhav, Marc Ferrer, Pei-Yong Shi, Anton Simeonov, Luis M. Schang. A platform of assays for the discovery of anti-Zika small-molecules with activity in a 3D-bioprinted outer-blood-retina model. PLOS ONE 2022; 17(1): e0261821 doi: 10.1371/journal.pone.0261821
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3 |
Jacob T. Beaver, Nadia Lelutiu, Rumi Habib, Ioanna Skountzou. Evolution of Two Major Zika Virus Lineages: Implications for Pathology, Immune Response, and Vaccine Development. Frontiers in Immunology 2018; 9 doi: 10.3389/fimmu.2018.01640
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4 |
Fang Sun, Zhiqiang Xia, Yuewen Han, Minjun Gao, Luyao Wang, Yingliang Wu, Jean-Marc Sabatier, Lixia Miao, Zhijian Cao. Topology, Antiviral Functional Residues and Mechanism of IFITM1. Viruses 2020; 12(3): 295 doi: 10.3390/v12030295
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5 |
Fernando Ruiz-Jiménez, Jose Humberto Pérez-Olais, Chidinma Raymond, Barnabas J King, C. Patrick McClure, Richard A. Urbanowicz, Jonathan K. Ball. Challenges on the development of a pseudotyping assay for Zika glycoproteins.
Journal of Medical Microbiology
2021; 70(9) doi: 10.1099/jmm.0.001413
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6 |
Matt Sherwood, Yilu Zhou, Yi Sui, Yihua Wang, Paul Skipp, Carolini Kaid, Juliet Gray, Keith Okamoto, Rob M. Ewing. Integrative transcriptomic and proteomic study of Zika viral infection reveals potential mechanisms for oncolytic therapy in neuroblastoma. F1000Research 2023; 12: 719 doi: 10.12688/f1000research.132627.1
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7 |
Fabian Elgner, Catarina Sabino, Michael Basic, Daniela Ploen, Arnold Grünweller, Eberhard Hildt. Inhibition of Zika Virus Replication by Silvestrol. Viruses 2018; 10(4): 149 doi: 10.3390/v10040149
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8 |
Mariana Baz. Zika Virus. Methods in Molecular Biology 2020; 2142: 9 doi: 10.1007/978-1-0716-0581-3_2
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9 |
Sangya Shaily, Archana Upadhya. Zika virus: Molecular responses and tissue tropism in the mammalian host. Reviews in Medical Virology 2019; 29(4) doi: 10.1002/rmv.2050
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10 |
Marco P. Alves, Nathalie J. Vielle, Volker Thiel, Stephanie Pfaender. Research Models and Tools for the Identification of Antivirals and Therapeutics against Zika Virus Infection. Viruses 2018; 10(11): 593 doi: 10.3390/v10110593
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11 |
Rebecca Peters, Mario Stevenson. Immunological Methods in Microbiology. Methods in Microbiology 2020; 47: 275 doi: 10.1016/bs.mim.2019.11.009
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12 |
Justus Thomas Obiajulu Sievers, Anom Bowolaksono, R. Tedjo Sasmono. Characterization of the infectivity of an Indonesian Zika virus strain in mammalian cell lines. Asian Pacific Journal of Tropical Biomedicine 2024; 14(5): 215 doi: 10.4103/apjtb.apjtb_35_24
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13 |
Michael Basic, Fabian Elgner, Daniela Bender, Catarina Sabino, Marie-Luise Herrlein, Hanna Roth, Mirco Glitscher, Alicia Fath, Thomas Kerl, Hans-Günther Schmalz, Eberhard Hildt. A synthetic derivative of houttuynoid B prevents cell entry of Zika virus. Antiviral Research 2019; 172: 104644 doi: 10.1016/j.antiviral.2019.104644
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14 |
Matt Sherwood, Yilu Zhou, Yi Sui, Yihua Wang, Paul Skipp, Carolini Kaid, Juliet Gray, Keith Okamoto, Rob M. Ewing. Integrated re-analysis of transcriptomic and proteomic datasets reveals potential mechanisms for Zika viral-based oncolytic therapy in neuroblastoma. F1000Research 2024; 12: 719 doi: 10.12688/f1000research.132627.3
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15 |
Zhen Wu, Yu He, Tao Wang, Mingshu Wang, Anchun Cheng, Shun Chen. DENV and ZIKV infection: Species specificity and broad cell tropism. Virology 2024; 600: 110276 doi: 10.1016/j.virol.2024.110276
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16 |
Mario Alberto Cuapa-González, Gerardo Santos-López, Abdu Orduña-Díaz, Hugo Martínez-Gutiérrez, Marlon Rojas-López. Detection of Zika Virus by the Development of a Colloidal Gold Nanoparticle-Based Immunosensor. Analytical Letters 2024; : 1 doi: 10.1080/00032719.2024.2313708
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17 |
Svetlana F. Khaiboullina, Fabiola M. Ribeiro, Timsy Uppal, Ekaterina V. Martynova, Albert A. Rizvanov, Subhash C. Verma. Zika Virus Transmission Through Blood Tissue Barriers. Frontiers in Microbiology 2019; 10 doi: 10.3389/fmicb.2019.01465
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18 |
Shilpa Ravindran, Anismrita Lahon. Tropism and immune response of chikungunya and zika viruses: An overview. Cytokine 2023; 170: 156327 doi: 10.1016/j.cyto.2023.156327
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19 |
Catarina Sabino, Daniela Bender, Marie-Luise Herrlein, Eberhard Hildt, Susana López. The Epidermal Growth Factor Receptor Is a Relevant Host Factor in the Early Stages of The Zika Virus Life CycleIn Vitro. Journal of Virology 2021; 95(20) doi: 10.1128/JVI.01195-21
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20 |
Cory D DuPai, Claire D McWhite, Catherine B Smith, Rebecca Garten, Sebastian Maurer-Stroh, Claus O Wilke. Influenza passaging annotations: what they tell us and why we should listen. Virus Evolution 2019; 5(1) doi: 10.1093/ve/vez016
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21 |
Kerstin K. Schwickert, Mirco Glitscher, Daniela Bender, Nuka Ivalu Benz, Robin Murra, Kevin Schwickert, Steffen Pfalzgraf, Tanja Schirmeister, Ute A. Hellmich, Eberhard Hildt. Zika virus replication is impaired by a selective agonist of the TRPML2 ion channel. Antiviral Research 2024; 228: 105940 doi: 10.1016/j.antiviral.2024.105940
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22 |
Matt Sherwood, Yilu Zhou, Yi Sui, Yihua Wang, Paul Skipp, Carolini Kaid, Juliet Gray, Keith Okamoto, Rob M. Ewing. Integrated re-analysis of transcriptomic and proteomic datasets reveals potential mechanisms for Zika viral-based oncolytic therapy in neuroblastoma. F1000Research 2023; 12: 719 doi: 10.12688/f1000research.132627.2
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23 |
Jing Gao, Jiayi Chen, Weizhi Lu, Jintai Cai, Linjuan Shi, Wei Zhao, Bao Zhang. Construction of an infectious clone of Zika virus stably expressing an EGFP marker in a eukaryotic expression system. Virology Journal 2021; 18(1) doi: 10.1186/s12985-021-01622-z
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24 |
Santiago Leiva, María Paula Dizanzo, Cintia Fabbri, Marina Bugnon Valdano, Victoria Luppo, Silvana Levis, Ana Laura Cavatorta, María Alejandra Morales, Daniela Gardiol. Application of quantitative immunofluorescence assays to analyze the expression of cell contact proteins during Zika virus infections. Virus Research 2021; 304: 198544 doi: 10.1016/j.virusres.2021.198544
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25 |
Merel Oeyen, Eef Meyen, Sam Noppen, Sandra Claes, Jordi Doijen, Kurt Vermeire, Roderich D. Süssmuth, Dominique Schols. Labyrinthopeptin A1 inhibits dengue and Zika virus infection by interfering with the viral phospholipid membrane. Virology 2021; 562: 74 doi: 10.1016/j.virol.2021.07.003
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26 |
Antonios Fikatas, Peter Vervaeke, Eef Meyen, Nuria Llor, Sergi Ordeix, Ine Boonen, Magda Bletsa, Liana Eleni Kafetzopoulou, Philippe Lemey, Mercedes Amat, Christophe Pannecouque, Dominique Schols. A Novel Series of Indole Alkaloid Derivatives Inhibit Dengue and Zika Virus Infection by Interference with the Viral Replication Complex. Antimicrobial Agents and Chemotherapy 2021; 65(8) doi: 10.1128/AAC.02349-20
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27 |
Merel Oeyen, Clément J. F. Heymann, Maarten Jacquemyn, Dirk Daelemans, Dominique Schols. The Role of TIM-1 and CD300a in Zika Virus Infection Investigated with Cell-Based Electrical Impedance. Biosensors 2024; 14(8): 362 doi: 10.3390/bios14080362
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28 |
Kenneth H. Dinnon III, Emily N. Gallichotte, Ethan J. Fritch, Vineet D. Menachery, Ralph S. Baric, Paulo Pimenta. Shortening of Zika virus CD-loop reduces neurovirulence while preserving antigenicity. PLOS Neglected Tropical Diseases 2019; 13(3): e0007212 doi: 10.1371/journal.pntd.0007212
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29 |
Emilia Sippert, Bruno C. Rocha, Felipe L. Assis, Suzan Ok, Maria Rios. Use of Monocyte-Derived Macrophage Culture Increases Zika Virus Isolation Rate from Human Plasma. Viruses 2019; 11(11): 1058 doi: 10.3390/v11111058
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30 |
Christian Alfano, Ivan Gladwyn-Ng, Thérèse Couderc, Marc Lecuit, Laurent Nguyen. The Unfolded Protein Response: A Key Player in Zika Virus-Associated Congenital Microcephaly. Frontiers in Cellular Neuroscience 2019; 13 doi: 10.3389/fncel.2019.00094
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