2023EurosurveillanceOpen access

Authors’ response: Highly pathogenic influenza A(H5N1) viruses in farmed mink outbreak contain a disrupted second sialic acid binding site in neuraminidase, similar to human influenza A viruses

Montserrat Agüero, Isabella Monne, Azucena Sánchez, Bianca Zecchin, Alice Fusaro, Marı́a José Ruano, Manuel del Valle Arrojo, Ricardo Fernández-Antonio, Antonio Manuel Souto, Pedro Tordable, Julio Cañás, Francesco Bonfante, Edoardo Giussani, Calogero Terregino, Jesús Javier Orejas

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Abstract

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Preview this article: Authors' response: Highly pathogenic influenza A(H5N1) viruses in farmed mink outbreak contain a disrupted second sialic acid binding site in neuraminidase, similar to human influenza A viruses, Page 1 of 1 < Previous page | Next page > /docserver/preview/fulltext/eurosurveillance/28/7/eurosurv-28-7-6-1.gif

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Available abstract

Preview this article: Authors' response: Highly pathogenic influenza A(H5N1) viruses in farmed mink outbreak contain a disrupted second sialic acid binding site in neuraminidase, similar to human influenza A viruses, Page 1 of 1 < Previous page | Next page > /docserver/preview/fulltext/eurosurveillance/28/7/eurosurv-28-7-6-1.gif

Key concepts: Neuraminidase, Influenza A virus subtype H5N1, Mink, Sialic acid, Virology, Outbreak, Human influenza, Biology

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Authors’ response: Highly pathogenic influenza A(H5N1) viruses in farmed mink outbreak contain a disrupted second sialic acid binding site in neuraminidase, similar to human influenza A viruses — Research Paper | ScholarLens