<vardef> [SIZE=+1]http://www.fasebj.org/cgi/content/abstract/fj.06-7880comv1
Published online before print October 9, 2007 as doi: 10.1096/fj.06-7880com. [/SIZE]</vardef>
[SIZE=+1]Avian influenza receptor expression in H5N1-infected and noninfected human tissues [/SIZE]
[SIZE=+1] <nowrap> Lu Yao, <wbr>Christine Korteweg, <wbr>Wei Hsueh, <wbr> and Jiang Gu </nowrap> [/SIZE]
[SIZE=+1]E-mail contact: jianggu@bjmu.edu.cn[/SIZE]
<abs> </abs>
[SIZE=+1]Avian and human influenza viruses preferentially bind to
-2,3-linked<sup> </sup>and
-2,6-linked sialic acids, respectively. Until today, the<sup> </sup>distributions of these two receptor types had never been investigated<sup> </sup>in H5N1-infected human tissue samples. Here, the expression<sup> </sup>of avian (AIV-Rs) and human influenza receptors (HuIV-Rs) is<sup> </sup>studied in various organs (upper and lower respiratory tracts,<sup> </sup>brain, placenta, liver, kidney, heart, intestines, and spleen)<sup> </sup>of two H5N1 cases and 14 control cases. Histochemical stains<sup> </sup>using biotinylated Maackia amurensis lectin II and Sambucus<sup> </sup>nigra agglutinin were performed to localize AIV-Rs and HuIV-Rs,<sup> </sup>respectively. Immunohistochemical stainings were performed to<sup> </sup>identify the receptor-bearing cells. AIV-Rs were detected on<sup> </sup>type II pneumocytes; a limited number of epithelial cells of<sup> </sup>the upper respiratory tract; and the bronchi, bronchioli, and<sup> </sup>trachea; as well as on Kupffer cells, glomerular cells, splenic<sup> </sup>T cells, and neurons in the brain and intestines. HuIV-Rs were<sup> </sup>abundantly present in the respiratory tract and lungs. They<sup> </sup>were also detected on Hofbauer cells, glomerular cells, splenic<sup> </sup>B cells, and in the liver. Moreover, endothelial cells of all<sup> </sup>organs examined expressed both receptor types. In conclusion,<sup> </sup>the distribution pattern of AIV-Rs is partially inconsistent<sup> </sup>with the pattern of infected cells as detected in previous studies,<sup> </sup>which suggests there may be other receptors or mechanisms involved<sup> </sup>in H5N1 infection. In addition, the diffuse presence of receptors<sup> </sup>on endothelial cells may account for the multiple organ involvement<sup> </sup>in H5N1 influenza. Finally, the relative lack of AIV-Rs in the<sup> </sup>upper airway may be a one of the factors preventing efficient<sup> </sup>human-to-human transmission of H5N1 influenza. Yao, L., Korteweg,<sup> </sup>C., Hsueh, W., Gu, J. Avian influenza receptor expression in<sup> </sup>H5N1-infected and noninfected human tissues.[/SIZE]
[SIZE=+1]<sup> </sup> [/SIZE] [SIZE=+1] [/SIZE]
Published online before print October 9, 2007 as doi: 10.1096/fj.06-7880com. [/SIZE]</vardef>
[SIZE=+1]Avian influenza receptor expression in H5N1-infected and noninfected human tissues [/SIZE]
[SIZE=+1] <nowrap> Lu Yao, <wbr>Christine Korteweg, <wbr>Wei Hsueh, <wbr> and Jiang Gu </nowrap> [/SIZE]
[SIZE=+1]E-mail contact: jianggu@bjmu.edu.cn[/SIZE]
<abs> </abs>
[SIZE=+1]Avian and human influenza viruses preferentially bind to
[SIZE=+1]<sup> </sup> [/SIZE] [SIZE=+1] [/SIZE]