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Cited by in CrossRef
For: Armstrong N, Hou W, Tang Q. Biological and historical overview of Zika virus. World J Virol 2017; 6(1): 1-8 [PMID: 28239566 DOI: 10.5501/wjv.v6.i1.1]
URL: https://www.wjgnet.com/2220-3249/full/v6/i1/1.htm
Number Citing Articles
1
James W. Mungin, Xin Chen, Bindong Liu. Interferon Epsilon Signaling Confers Attenuated Zika Replication in Human Vaginal Epithelial CellsPathogens 2022; 11(8): 853 doi: 10.3390/pathogens11080853
2
Igor José dos Santos Nascimento, Érica Erlanny da Silva Rodrigues, Manuele Figueiredo da Silva, João Xavier de Araújo-Júnior, Ricardo Olimpio de Moura. Advances in Computational Methods to Discover New NS2B-NS3 Inhibitors Useful Against Dengue and Zika VirusesCurrent Topics in Medicinal Chemistry 2022; 22(29): 2435 doi: 10.2174/1568026623666221122121330
3
Raj K. Singh, Kuldeep Dhama, Rekha Khandia, Ashok Munjal, Kumaragurubaran Karthik, Ruchi Tiwari, Sandip Chakraborty, Yashpal S. Malik, Rubén Bueno-Marí. Prevention and Control Strategies to Counter Zika Virus, a Special Focus on Intervention Approaches against Vector Mosquitoes—Current UpdatesFrontiers in Microbiology 2018; 9 doi: 10.3389/fmicb.2018.00087
4
E. I. Kazachinskaya, N. V. Volkova, A. V. Ivanova. Strategies for Investigation of Zika Virus PathogenicityProblems of Particularly Dangerous Infections 2018; (4): 6 doi: 10.21055/0370-1069-2018-4-6-14
5
Subhash C. Basak, Subhabrata Majumdar, Ashesh Nandy, Proyasha Roy, Tathagata Dutta, Marjan Vracko, Apurba K. Bhattacharjee. Computer-Assisted and Data Driven Approaches for Surveillance, Drug Discovery, and Vaccine Design for the Zika VirusPharmaceuticals 2019; 12(4): 157 doi: 10.3390/ph12040157
6
Mireia Puig-Torrents, Juana Díez. Controlling arbovirus infection: high-throughput transcriptome and proteome insightsFrontiers in Microbiology 2024; 15 doi: 10.3389/fmicb.2024.1330303
7
Se-Ran Jun, Trudy M. Wassenaar, Visanu Wanchai, Preecha Patumcharoenpol, Intawat Nookaew, David W. Ussery. Suggested mechanisms for Zika virus causing microcephaly: what do the genomes tell us?BMC Bioinformatics 2017; 18(S14) doi: 10.1186/s12859-017-1894-3
8
Malgorzata Bukrejewska, Urszula Derewenda, Malwina Radwanska, Daniel A. Engel, Zygmunt S. Derewenda. Crystal structures of the methyltransferase and helicase from the ZIKA 1947 MR766 Uganda strainActa Crystallographica Section D Structural Biology 2017; 73(9): 767 doi: 10.1107/S2059798317010737
9
Shudong Jiang. Biomedical Photonic Technologies2023; : 137 doi: 10.1002/9783527823550.ch5
10
Youssef Abo Elwan. Infections in Pregnancy2019; : 42 doi: 10.1017/9781108650434.005
11
Chandler C. Roe, Jolene Bowers, Hanna Oltean, Emilio DeBess, Philippe J. Dufresne, Scott McBurney, David P. Overy, Bodo Wanke, Colleen Lysen, Tom Chiller, Wieland Meyer, George R. Thompson, Shawn R. Lockhart, Crystal M. Hepp, David M. Engelthaler, J. Andrew Alspaugh. Dating the Cryptococcus gattii Dispersal to the North American Pacific NorthwestmSphere 2018; 3(1) doi: 10.1128/mSphere.00499-17
12
Wangheng Hou, Ruth Cruz-cosme, Najealicka Armstrong, Lilian Akello Obwolo, Fayuan Wen, Wenhui Hu, Min-Hua Luo, Qiyi Tang. Molecular cloning and characterization of the genes encoding the proteins of Zika virusGene 2017; 628: 117 doi: 10.1016/j.gene.2017.07.049
13
Dongxiao Liu, Lilian Akello Obwolo, Ruth Cruz-Cosme, Qiyi Tang. Syncytial and Congregative Effects of Dengue and Zika Viruses on the Aedes Albopictus Cell Line Differ among Viral StrainsZoonoses 2023; 3(1) doi: 10.15212/ZOONOSES-2023-0002
14
Debora Ferreira Barreto-Vieira, Fernanda Cunha Jácome, Marcos Alexandre Nunes da Silva, Gabriela Cardoso Caldas, Ana Maria Bispo de Filippis, Patrícia Carvalho de Sequeira, Elen Mello de Souza, Audrien Alves Andrade, Pedro Paulo de Abreu Manso, Gisela Freitas Trindade, Sheila Maria Barbosa Lima, Ortrud Monika Barth, Zheng Xing. Structural investigation of C6/36 and Vero cell cultures infected with a Brazilian Zika virusPLOS ONE 2017; 12(9): e0184397 doi: 10.1371/journal.pone.0184397
15
Thomas D. Horvath, Shai Dagan, Philip L. Lorenzi, David H. Hawke, Patricia Y. Scaraffia. Positional stable isotope tracer analysis reveals carbon routes during ammonia metabolism of Aedes aegypti mosquitoes The FASEB Journal 2018; 32(1): 466 doi: 10.1096/fj.201700657r