-
[1]
Shupeng Dong, Qiming Liang, 2018: Recent Advances in Animal Models of Zika Virus Infection, Virologica Sinica, 33, 125-130. doi: 10.1007/s12250-018-0007-4
-
[2]
Yuan Hui, Zhiming Wu, Zhiran Qin, Li Zhu, Junhe Liang, Xujuan Li, Hanmin Fu, Shiyu Feng, Zhiming Wu, Xiaoen He, Weizhi Lu, Weiwei Xiao, Qinghua Wu, Bao Zhang, Wei Zhao, 2018: Micro-droplet Digital Polymerase Chain Reaction and Real-Time Quantitative Polymerase Chain Reaction Technologies Provide Highly Sensitive and Accurate Detection of Zika Virus, Virologica Sinica, 33, 270-277. doi: 10.1007/s12250-018-0037-y
-
[3]
Zi-Da Zhen, Na Wu, Dong-Ying Fan, Jun-Hong Ai, Zheng-Ran Song, Jia-Tong Chang, Pei-Gang Wang, Yan-Hua Wu, Jing An, 2022: Growth hormone attenuates the brain damage caused by ZIKV infection in mice, Virologica Sinica, 37, 601-609. doi: 10.1016/j.virs.2022.06.004
-
[4]
Si-Qing Liu, Bo Zhang, 2016: Zika virus: a flavivirus caused pandemics in Latin America, Virologica Sinica, 31, 101-102. doi: 10.1007/s12250-016-3738-0
-
[5]
Jing-Wei Zhang, Han Wang, Jing Liu, Le Ma, Rong-Hong Hua, Zhi-Gao Bu, 2021: Generation of A Stable GFP-reporter Zika Virus System for High-throughput Screening of Zika Virus Inhibitors, Virologica Sinica, 36, 476-489. doi: 10.1007/s12250-020-00316-0
-
[6]
Jinna Yang, Changbai Huang, Yao Feng, Junfang He, Yang Liu, Ping Zhang, Chao Liu, 2025: Adaptor protein complex 1 gamma 1 subunit is an important host factor involved in both Zika virus and dengue virus infections, Virologica Sinica, 40, 874-883. doi: 10.1016/j.virs.2025.07.012
-
[7]
Zhuang Wang, Shaokang Yang, Qingsong Dai, Xiaojia Guo, Yuexiang Li, Wei Li, Xiaotong Yang, Jingjing Yang, Xintong Yan, Huimin Tao, Chongda Luo, Song Li, Xingjuan Chen, Ruiyuan Cao, Wu Zhong, 2023: In vitro and in vivo efficacy of Molnupiravir against Zika virus infections, Virologica Sinica, 38, 639-642. doi: 10.1016/j.virs.2023.05.011
-
[8]
Tao Hu, Juan Li, Michael J. Carr, Sebastián Duchȇne, Weifeng Shi, 2019: The Asian Lineage of Zika Virus: Transmission and Evolution in Asia and the Americas, Virologica Sinica, 34, 1-8. doi: 10.1007/s12250-018-0078-2
-
[9]
Shili Zhou, Quanshi Lin, Changbai Huang, Xiaotong Luo, Xu Tian, Chao Liu, Ping Zhang, 2022: Rottlerin plays an antiviral role at early and late steps of Zika virus infection, Virologica Sinica, 37, 685-694. doi: 10.1016/j.virs.2022.07.012
-
[10]
Jing Wang, Hongbin Xu, Song Song, Rui Cheng, Na Fan, Shihong Fu, Shaozai Zhang, Ziqian Xu, Ying He, Wenwen Lei, Fan Li, Huanyu Wang, Xiaoqing Lu, Guodong Liang, 2021: Emergence of Zika Virus in Culex tritaeniorhynchus and Anopheles sinensis Mosquitoes in China, Virologica Sinica, 36, 33-42. doi: 10.1007/s12250-020-00239-w
-
[11]
Hedi Zhou, Bryan Eaton, Zhihong Hu, Basil Arif, 2016: Accidental discovery and isolation of Zika virus in Uganda and the relentless epidemiologist behind the investigations, Virologica Sinica, 31, 357-361. doi: 10.1007/s12250-016-3821-6
-
[12]
Shiyu Dai, Tao Zhang, Yanfang Zhang, Hualin Wang, Fei Deng, 2018: Zika Virus Baculovirus-Expressed Virus-Like Particles Induce Neutralizing Antibodies in Mice, Virologica Sinica, 33, 213-226. doi: 10.1007/s12250-018-0030-5
-
[13]
Xiaodan Shi, Jingping Hu, Jing Guo, Chuanjian Wu, Sidong Xiong, Chunsheng Dong, 2019: A Vesicular Stomatitis Virus-Based Vaccine Carrying Zika Virus Capsid Protein Protects Mice from Viral Infection, Virologica Sinica, 34, 106-110. doi: 10.1007/s12250-019-00083-7
-
[14]
Dan Luo, Yuanjiu Miao, Xianliang Ke, Zhongyuan Tan, Chun Hu, Penghui Li, Ting Wang, Yuan Zhang, Jianhong Sun, Yan Liu, Hanzhong Wang, Zhenhua Zheng, 2020: Baculovirus Surface Display of Zika Virus Envelope Protein Protects against Virus Challenge in Mouse Model, Virologica Sinica, 35, 637-650. doi: 10.1007/s12250-020-00238-x
-
[15]
Xugang Wang, Chaonan Qian, Chenxi Zhang, Siyun Hu, Muhammad Asad, Chengjie Yang, Bingrui Liao, Xiaotong Guo, Chen Zhang, Quanzhi Li, Xinyao Li, Qiuying Huang, Youhui Si, Bibo Zhu, Shengbo Cao, Jing Ye, 2025: Zika virus transmission in Aedes aegypti: A systematic study on the ability of mosquitoes to transmit the virus horizontally and vertically, Virologica Sinica, 40, 192-205. doi: 10.1016/j.virs.2025.02.001
-
[16]
Chenglin Deng, Siqing Liu, Qiuyan Zhang, Mingyue Xu, Honglei Zhang, Dayong Gu, Lei Shi, Jian'an He, Gengfu Xiao, Bo Zhang, 2016: Isolation and characterization of Zika virus imported to China using C6/36 mosquito cells, Virologica Sinica, 31, 176-179. doi: 10.1007/s12250-016-3778-5
-
[17]
Shu Shen, Junming Shi, Jun Wang, Shuang Tang, Hualin Wang, Zhihong Hu, Fei Deng, 2016: Phylogenetic analysis revealed the central roles of two African countries in the evolution and worldwide spread of Zika virus, Virologica Sinica, 31, 118-130. doi: 10.1007/s12250-016-3774-9
-
[18]
Gary Wong, Shihua He, Vinayakumar Siragam, Yuhai Bi, Majambu Mbikay, Michel Chretien, Xiangguo Qiu, 2017: Antiviral activity of quercetin-3-β-O-D-glucoside against Zika virus infection, Virologica Sinica, 32, 545-547. doi: 10.1007/s12250-017-4057-9
-
[19]
Oderinde Soji Bamidele, Abdulbasi Bakoji, Samaila Jackson Yaga, Kunle Ijaya, Bukar Mohammed, Ismaila Yunusa Yuguda, Marycelin M. Baba, 2025: Zika virus infections and associated risk factors among pregnant women in Gombe, Nigeria, Virologica Sinica, 40, 61-70. doi: 10.1016/j.virs.2024.12.008
-
[20]
Weijie Chen, Yukun Li, Xiuling Yu, Zhenwei Wang, Wenbiao Wang, Menglan Rao, Yongkui Li, Zhen Luo, Qiwei Zhang, Jinbiao Liu, Jianguo Wu, 2023: Zika virus non-structural protein 4B interacts with DHCR7 to facilitate viral infection, Virologica Sinica, 38, 23-33. doi: 10.1016/j.virs.2022.09.009