human | Q5 |
P106 | occupation | virologist | Q15634281 |
Q40061333 | A novel polyepitope vaccine elicited HIV peptide specific CD4+ T cell responses in HLA-A2/DRB1 transgenic mice |
Q38157718 | Antibody-based assay discriminates Zika virus infection from other flaviviruses |
Q52605980 | Antiviral effects of ferric ammonium citrate. |
Q45324876 | Both structure and function of human monoclonal antibodies contribute to enhancement of Zika virus infectivity in vitro |
Q33785818 | Both viremia and cytokine levels associate with the lack of severe disease in secondary dengue 1 infection among adult Chinese patients |
Q52684417 | Correction for Liu et al., "Endoplasmic Reticulum Protein SCAP Inhibits Dengue Virus NS2B3 Protease by Suppressing Its K27-Linked Polyubiquitylation". |
Q55084361 | Delayed and highly specific antibody response to nonstructural protein 1 (NS1) revealed during natural human ZIKV infection by NS1-based capture ELISA. |
Q33798068 | Delineating antibody recognition against Zika virus during natural infection |
Q42963067 | Dengue fever in China: an emerging problem demands attention |
Q56343523 | Dengue immune sera enhance Zika virus infection in human peripheral blood monocytes through Fc gamma receptors |
Q25708259 | Early detection of Zika virus infection among travellers from areas of ongoing transmission in China: Table 1 |
Q41922147 | Elaboration of tetravalent antibody responses against dengue viruses using a subunit vaccine comprised of a single consensus dengue envelope sequence |
Q38715320 | Endoplasmic Reticulum Protein SCAP Inhibits Dengue Virus NS2B3 Protease by Suppressing Its K27-Linked Polyubiquitylation |
Q35887235 | In silico design of a DNA-based HIV-1 multi-epitope vaccine for Chinese populations |
Q52880858 | Insect cell-produced recombinant protein subunit vaccines protect against Zika virus infection. |
Q51782806 | Recombinant Zika virus envelope protein elicited protective immunity against Zika virus in immunocompetent mice. |
Q47600312 | Structure, Immunogenicity, and Protective Mechanism of an Engineered Enterovirus 71-Like Particle Vaccine Mimicking 80S Empty Capsid |
Q40412500 | Unique impacts of HBV co-infection on clinical and laboratory findings in a recent dengue outbreak in China. |
Search more.