[SIZE=-1]http://jvi.asm.org/cgi/content/abstract/81/13/6890
Journal of Virology, July 2007, p. 6890-6898, Vol. 81, No. 13
0022-538X/07/$08.00+0 doi:10.1128/JVI.00170-07
Copyright © 2007, American Society for Microbiology. All Rights Reserved.[/SIZE]
Inefficient Transmission of H5N1 Influenza Viruses in a Ferret Contact Model<sup>
</sup>
Hui-Ling Yen,<sup>1</sup> Aleksandr S. Lipatov,<sup>1</sup><sup>,¶</sup> Natalia A. Ilyushina,<sup>1</sup> Elena A. Govorkova,<sup>1</sup> John Franks,<sup>1</sup> Neziha Yilmaz,<sup>2</sup> Alan Douglas,<sup>3</sup> Alan Hay,<sup>3</sup> Scott Krauss,<sup>1</sup> Jerold E. Rehg,<sup>4</sup> Erich Hoffmann,<sup>1</sup> and Robert G. Webster<sup>1</sup><sup>*</sup> Departments of Infectious Diseases (Division of Virology),<sup>1</sup> Pathology, St. Jude Children's Research Hospital, Memphis, Tennessee,<sup>4</sup> Department of Virology, Refik Saydam Hygiene Institute, Sihhiye-Ankara, Turkey,<sup>2</sup> Division of Virology, National Institute for Medical Research, London, United Kingdom<sup>3</sup>
Received 25 January 2007/ Accepted 16 April 2007
<!-- ABS --> The abilities to infect and transmit efficiently among humans<sup> </sup>are essential for a novel influenza A virus to cause a pandemic.<sup> </sup>To evaluate the pandemic potential of widely disseminated H5N1<sup> </sup>influenza viruses, a ferret contact model using experimental<sup> </sup>groups comprised of one inoculated ferret and two contact ferrets<sup> </sup>was used to study the transmissibility of four human H5N1 viruses<sup> </sup>isolated from 2003 to 2006. The effects of viral pathogenicity<sup> </sup>and receptor binding specificity (affinity to synthetic sialosaccharides<sup> </sup>with
2,3 or
2,6 linkages) on transmissibility were assessed.<sup> </sup>A/Vietnam/1203/04 and A/Vietnam/JP36-2/05 viruses, which possess<sup> </sup>"avian-like"
2,3-linked sialic acid (SA) receptor specificity,<sup> </sup>caused neurological symptoms and death in ferrets inoculated<sup> </sup>with 10<sup>3</sup> 50% tissue culture infectious doses. A/Hong Kong/213/03<sup> </sup>and A/Turkey/65-596/06 viruses, which show binding affinity<sup> </sup>for "human-like"
2,6-linked SA receptors in addition to their<sup> </sup>affinity for
2,3-linked SA receptors, caused mild clinical symptoms<sup> </sup>and were not lethal to the ferrets. No transmission of A/Vietnam/1203/04<sup> </sup>or A/Turkey/65-596/06 virus was detected. One contact ferret<sup> </sup>developed neutralizing antibodies to A/Hong Kong/213/03 but<sup> </sup>did not exhibit any clinical signs or detectable virus shedding.<sup> </sup>In two groups, one of two naïve contact ferrets had detectable<sup> </sup>virus after 6 to 8 days when housed together with the A/Vietnam/JP36-2/05<sup> </sup>virus-inoculated ferrets. Infected contact ferrets showed severe<sup> </sup>clinical signs, although little or no virus was detected in<sup> </sup>nasal washes. This limited virus shedding explained the absence<sup> </sup>of secondary transmission from the infected contact ferret to<sup> </sup>the other naïve ferret that were housed together. Our results<sup> </sup>suggest that despite their receptor binding affinity, circulating<sup> </sup>H5N1 viruses retain molecular determinants that restrict their<sup> </sup>spread among mammalian species.<sup> </sup>
<hr align="left" width="50%"><!-- null --> * Corresponding author. Mailing address: Department of Infectious Diseases, St. Jude Children's Research Hospital, 332 N. Lauderdale, Memphis, TN 38105. Phone: (901) 495-3400. E-mail: robert.webster@stjude.org
Journal of Virology, July 2007, p. 6890-6898, Vol. 81, No. 13
0022-538X/07/$08.00+0 doi:10.1128/JVI.00170-07
Copyright © 2007, American Society for Microbiology. All Rights Reserved.[/SIZE]
Inefficient Transmission of H5N1 Influenza Viruses in a Ferret Contact Model<sup>
Hui-Ling Yen,<sup>1</sup> Aleksandr S. Lipatov,<sup>1</sup><sup>,¶</sup> Natalia A. Ilyushina,<sup>1</sup> Elena A. Govorkova,<sup>1</sup> John Franks,<sup>1</sup> Neziha Yilmaz,<sup>2</sup> Alan Douglas,<sup>3</sup> Alan Hay,<sup>3</sup> Scott Krauss,<sup>1</sup> Jerold E. Rehg,<sup>4</sup> Erich Hoffmann,<sup>1</sup> and Robert G. Webster<sup>1</sup><sup>*</sup> Departments of Infectious Diseases (Division of Virology),<sup>1</sup> Pathology, St. Jude Children's Research Hospital, Memphis, Tennessee,<sup>4</sup> Department of Virology, Refik Saydam Hygiene Institute, Sihhiye-Ankara, Turkey,<sup>2</sup> Division of Virology, National Institute for Medical Research, London, United Kingdom<sup>3</sup>
Received 25 January 2007/ Accepted 16 April 2007
<!-- ABS --> The abilities to infect and transmit efficiently among humans<sup> </sup>are essential for a novel influenza A virus to cause a pandemic.<sup> </sup>To evaluate the pandemic potential of widely disseminated H5N1<sup> </sup>influenza viruses, a ferret contact model using experimental<sup> </sup>groups comprised of one inoculated ferret and two contact ferrets<sup> </sup>was used to study the transmissibility of four human H5N1 viruses<sup> </sup>isolated from 2003 to 2006. The effects of viral pathogenicity<sup> </sup>and receptor binding specificity (affinity to synthetic sialosaccharides<sup> </sup>with
<hr align="left" width="50%"><!-- null --> * Corresponding author. Mailing address: Department of Infectious Diseases, St. Jude Children's Research Hospital, 332 N. Lauderdale, Memphis, TN 38105. Phone: (901) 495-3400. E-mail: robert.webster@stjude.org
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