Serveur d'exploration H2N2 - Checkpoint (PubMed)

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List of bibliographic references

Number of relevant bibliographic references: 6.
Ident.Authors (with country if any)Title
000075 (2015) Liudmila M. Tsybalova [Russie] ; Liudmila A. Stepanova [Russie] ; Victor V. Kuprianov [Russie] ; Elena A. Blokhina [Russie] ; Marina V. Potapchuk [Russie] ; Alexander V. Korotkov [Russie] ; Andrey N. Gorshkov [Russie] ; Marina A. Kasyanenko [Russie] ; Nikolai V. Ravin [Russie] ; Oleg I. Kiselev [Russie]Development of a candidate influenza vaccine based on virus-like particles displaying influenza M2e peptide into the immunodominant region of hepatitis B core antigen: Broad protective efficacy of particles carrying four copies of M2e.
000096 (2014) Irina Isakova-Sivak [États-Unis] ; Li-Mei Chen ; Melissa Bourgeois ; Yumiko Matsuoka ; J Theo M. Voeten ; Jacco G M. Heldens ; Han Van Den Bosch ; Alexander Klimov ; Larisa Rudenko ; Nancy J. Cox ; Ruben O. DonisCharacterization of reverse genetics-derived cold-adapted master donor virus A/Leningrad/134/17/57 (H2N2) and reassortants with H5N1 surface genes in a mouse model.
000131 (2012) Jens C. Krause [États-Unis] ; Tshidi Tsibane ; Terrence M. Tumpey ; Chelsey J. Huffman ; Randy Albrecht ; David L. Blum ; Irene Ramos ; Ana Fernandez-Sesma ; Kathryn M. Edwards ; Adolfo García-Sastre ; Christopher F. Basler ; James E. CroweHuman monoclonal antibodies to pandemic 1957 H2N2 and pandemic 1968 H3N2 influenza viruses.
000170 (2010) Jeff Alexander [États-Unis] ; Pamuk Bilsel ; Marie-France Del Guercio ; Stephani Stewart ; Aleksandra Marinkovic-Petrovic ; Scott Southwood ; Claire Crimi ; Lo Vang ; Les Walker ; Glenn Ishioka ; Vivek Chitnis ; Alessandro Sette ; Erika Assarsson ; Drew Hannaman ; Jason Botten ; Mark J. NewmanUniversal influenza DNA vaccine encoding conserved CD4+ T cell epitopes protects against lethal viral challenge in HLA-DR transgenic mice.
000221 (2008) Werner Lange[Pandemic scenarios].
000249 (2008) Andrew D. Cliff [Royaume-Uni] ; Peter Haggett ; Matthew Smallman-RaynorAn exploratory method for estimating the changing speed of epidemic waves from historical data.

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