Oral Delivery of a DNA Vaccine Expressing the PrM and E Genes: A Promising Vaccine Strategy against Flavivirus in Ducks
暂无分享,去创建一个
R. Jia | Z. Yin | Xinxin Zhao | A. Cheng | Mingshu Wang | Dekang Zhu | Shun Chen | Mafeng Liu | Qiao Yang | Ying Wu | Juan Huang | Haoyue Shen
[1] C. Poh,et al. Recent advances in delivery of veterinary DNA vaccines against avian pathogens , 2019, Veterinary Research.
[2] R. Jia,et al. Oral Vaccination with a DNA Vaccine Encoding Capsid Protein of Duck Tembusu Virus Induces Protection Immunity , 2018, Viruses.
[3] M. Halloran,et al. Antibody-dependent enhancement of severe dengue disease in humans , 2017, Science.
[4] A. Cheng,et al. An updated review of avian-origin Tembusu virus: a newly emerging avian Flavivirus. , 2017, The Journal of general virology.
[5] L. Lambrechts,et al. Discovery of flavivirus-derived endogenous viral elements in Anopheles mosquito genomes supports the existence of Anopheles-associated insect-specific flaviviruses , 2017, Virus evolution.
[6] J. Mascola,et al. Rapid development of a DNA vaccine for Zika virus , 2016, Science.
[7] Grzegorz Kudla,et al. Codon optimization of antigen coding sequences improves the immune potential of DNA vaccines against avian influenza virus H5N1 in mice and chickens , 2016, Virology Journal.
[8] Chris Morrison. DNA vaccines against Zika virus speed into clinical trials , 2016, Nature Reviews Drug Discovery.
[9] Yongqiang Deng,et al. In vitro and in vivo characterization of chimeric duck Tembusu virus based on Japanese encephalitis live vaccine strain SA14-14-2. , 2016, The Journal of general virology.
[10] Richard G. Jarman,et al. Vaccine Protection Against Zika Virus from Brazil , 2016, Nature.
[11] Jia Hua Cheng,et al. Liposomes containing recombinant E protein vaccine against duck Tembusu virus in ducks. , 2016, Vaccine.
[12] R. Jia,et al. Identification and molecular characterization of a novel duck Tembusu virus isolate from Southwest China , 2015, Archives of Virology.
[13] K. Peng,et al. Lipopolysaccharide stimulation upregulated Toll-like receptor 4 expression in chicken cerebellum. , 2015, Veterinary immunology and immunopathology.
[14] Jianguo Wu,et al. Oral Delivery of a Novel Attenuated Salmonella Vaccine Expressing Influenza A Virus Proteins Protects Mice against H5N1 and H1N1 Viral Infection , 2015, PloS one.
[15] J. Xie,et al. Efficacy Evaluation of an Inactivated Duck Tembusu Virus Vaccine , 2015, Avian diseases.
[16] Hualan Chen,et al. The vaccine efficacy of recombinant duck enteritis virus expressing secreted E with or without PrM proteins of duck tembusu virus. , 2014, Vaccine.
[17] Zejun Li,et al. Development of a live attenuated vaccine candidate against duck Tembusu viral disease. , 2014, Virology.
[18] S. Chakravarty,et al. Structural, Antigenic, and Evolutionary Characterizations of the Envelope Protein of Newly Emerging Duck Tembusu Virus , 2013, PloS one.
[19] Hao Chen,et al. Tembusu virus in human, China. , 2013, Transboundary and emerging diseases.
[20] Y. Diao,et al. Characterization of a Tembusu virus isolated from naturally infected house sparrows (Passer domesticus) in Northern China. , 2013, Transboundary and emerging diseases.
[21] Shuo Su,et al. Complete Genome Sequence of Duck Tembusu Virus, Isolated from Muscovy Ducks in Southern China , 2012, Journal of Virology.
[22] Chunhe Wan,et al. Complete Genome Sequence of Avian Tembusu-Related Virus Strain WR Isolated from White Kaiya Ducks in Fujian, China , 2012, Journal of Virology.
[23] Shibo Jiang,et al. Salmonella typhi Ty21a bacterial ghost vector augments HIV-1 gp140 DNA vaccine-induced peripheral and mucosal antibody responses via TLR4 pathway. , 2012, Vaccine.
[24] R. Jia,et al. Attenuated Salmonella typhimurium delivering DNA vaccine encoding duck enteritis virus UL24 induced systemic and mucosal immune responses and conferred good protection against challenge , 2012, Veterinary Research.
[25] Franz X Heinz,et al. Flaviviruses and flavivirus vaccines. , 2012, Vaccine.
[26] Dabing Zhang,et al. Identification and molecular characterization of a novel flavivirus isolated from Pekin ducklings in China. , 2012, Veterinary microbiology.
[27] Linlin Li,et al. Identification and genomic analysis of two duck-origin Tembusu virus strains in southern China , 2012, Virus Genes.
[28] Xuejun Ma,et al. Complete Genome Sequence of a Novel Flavivirus, Duck Tembusu Virus, Isolated from Ducks and Geese in China , 2012, Journal of Virology.
[29] Nikolai Petrovsky,et al. Technologies for enhanced efficacy of DNA vaccines , 2012, Expert review of vaccines.
[30] N. Delaroque,et al. A DNA vaccine encoding the E protein of West Nile virus is protective and can be boosted by recombinant domain DIII. , 2011, Vaccine.
[31] Y. Kawaoka,et al. An infectious disease of ducks caused by a newly emerged Tembusu virus strain in mainland China. , 2011, Virology.
[32] W. Kong,et al. Protective cellular responses elicited by vaccination with influenza nucleoprotein delivered by a live recombinant attenuated Salmonella vaccine. , 2011, Vaccine.
[33] J. Mascola,et al. A West Nile virus DNA vaccine utilizing a modified promoter induces neutralizing antibody in younger and older healthy adults in a phase I clinical trial. , 2011, The Journal of infectious diseases.
[34] K. Liljebjelke,et al. Mucosal vaccination with a codon-optimized hemagglutinin gene expressed by attenuated Salmonella elicits a protective immune response in chickens against highly pathogenic avian influenza. , 2010, Vaccine.
[35] D. Fang,et al. Recombinant dengue virus-like particles from Pichia pastoris: efficient production and immunological properties , 2010, Virus Genes.
[36] D. Tambourgi,et al. IgY: A promising antibody for use in immunodiagnostic and in immunotherapy , 2010, Veterinary Immunology and Immunopathology.
[37] B. Gunn,et al. Evaluation of new generation Salmonella enterica serovar Typhimurium vaccines with regulated delayed attenuation to induce immune responses against PspA , 2009, Proceedings of the National Academy of Sciences.
[38] G. Chang,et al. A strong endoplasmic reticulum retention signal in the stem-anchor region of envelope glycoprotein of dengue virus type 2 affects the production of virus-like particles. , 2008, Virology.
[39] C. Palmer,et al. The public health and clinical significance of Giardia and Cryptosporidium in domestic animals , 2007, The Veterinary Journal.
[40] B. Murphy,et al. Prospects for a dengue virus vaccine , 2007, Nature Reviews Microbiology.
[41] Christopher T. Jones,et al. Functional Requirements of the Yellow Fever Virus Capsid Protein , 2007, Journal of Virology.
[42] Christopher T. Jones,et al. Functional Requirements of the Yellow Fever Virus Capsid Protein , 2007, Journal of Virology.
[43] M. Guzmán,et al. A recombinant capsid protein from Dengue-2 induces protection in mice against homologous virus. , 2007, Vaccine.
[44] N. Lemoine,et al. Bacterial gene therapy strategies , 2006, The Journal of pathology.
[45] W. Lubitz,et al. Bacterial ghosts--biological particles as delivery systems for antigens, nucleic acids and drugs. , 2004, Current opinion in biotechnology.
[46] S. Michalek,et al. Role of Innate Immune Factors in the Adjuvant Activity of Monophosphoryl Lipid A , 2003, Infection and Immunity.
[47] Denise A. Martin,et al. West Nile Virus Recombinant DNA Vaccine Protects Mouse and Horse from Virus Challenge and Expresses In Vitro a Noninfectious Recombinant Antigen That Can Be Used in Enzyme-Linked Immunosorbent Assays , 2001, Journal of Virology.
[48] E. Konishi,et al. Induction of Protective Immunity against Japanese Encephalitis in Mice by Immunization with a Plasmid Encoding Japanese Encephalitis Virus Premembrane and Envelope Genes , 1998, Journal of Virology.
[49] F. Heinz,et al. Proteolytic activation of tick-borne encephalitis virus by furin , 1997, Journal of virology.
[50] F. Heffron,et al. The lpf fimbrial operon mediates adhesion of Salmonella typhimurium to murine Peyer's patches. , 1996, Proceedings of the National Academy of Sciences of the United States of America.
[51] E. Konishi,et al. Enzyme‐linked immunosorbent assay using recombinant antigens for serodiagnosis of Japanese encephalitis , 1996, Journal of medical virology.
[52] C. Mandl,et al. Synthesis and secretion of recombinant tick-borne encephalitis virus protein E in soluble and particulate form , 1995, Journal of virology.
[53] S. Falkow,et al. Salmonella typhimurium initiates murine infection by penetrating and destroying the specialized epithelial M cells of the Peyer's patches , 1994, The Journal of experimental medicine.
[54] E. Paoletti,et al. Mice immunized with a subviral particle containing the Japanese encephalitis virus prM/M and E proteins are protected from lethal JEV infection. , 1992, Virology.
[55] X. Wen,et al. Construction of an oral vaccine for transmissible gastroenteritis virus based on the TGEV N gene expressed in an attenuated Salmonella typhimurium vector. , 2016, Journal of virological methods.
[56] Yongqiang Deng,et al. In vitro and in vivo characterization of chimeric duck Tembusu virus based on Japanese encephalitis live vaccine strain SA14-14-2. , 2016, The Journal of general virology.
[57] Samuel I. Miller,et al. Salmonellae interplay with host cells , 2008, Nature Reviews Microbiology.
[58] M. Rossmann,et al. A structural perspective of the flavivirus life cycle , 2005, Nature Reviews Microbiology.
[59] J. Roehrig. Antigenic structure of flavivirus proteins. , 2003, Advances in virus research.
[60] E. Gould,et al. Towards a new generation of flavivirus vaccines. , 1994, Vaccine.
[61] J. Schlesinger,et al. Processing, secretion, and immunoreactivity of carboxy terminally truncated dengue-2 virus envelope proteins expressed in insect cells by recombinant baculoviruses. , 1991, Virology.