Seroprevalence and Molecular Characterization of Human Respiratory Syncytial Virus and Human Adenovirus among Children in Ado‐Ekiti, Nigeria

Author(s):  
Olayinka O. Idris ◽  
Olatunji M. Kolawole
2019 ◽  
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Somayeh Shatizadeh Malekshahi ◽  
Shaghayegh Razaghipour ◽  
Yazdan Samieipoor ◽  
Farhad B. Hashemi ◽  
Ali Akbar Rahbari Manesh ◽  
...  

1999 ◽  
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pp. 1686-1689 ◽  
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Tony Mazzulli ◽  
Teresa C. T. Peret ◽  
Allison McGeer ◽  
Darlene Cann ◽  
Kelly S. MacDonald ◽  
...  

2013 ◽  
Vol 159 (3) ◽  
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Vichtavat Auksornkitti ◽  
Nichaphat Kamprasert ◽  
Siwanat Thongkomplew ◽  
Kamol Suwannakarn ◽  
Apiradee Theamboonlers ◽  
...  

PLoS ONE ◽  
2016 ◽  
Vol 11 (6) ◽  
pp. e0157163 ◽  
Author(s):  
Amary Fall ◽  
Ndongo Dia ◽  
El Hadj Abdel Kader Cisse ◽  
Davy E. Kiori ◽  
Fatoumata Diene Sarr ◽  
...  

PLoS ONE ◽  
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Rungnapa Malasao ◽  
Michiko Okamoto ◽  
Natthawan Chaimongkol ◽  
Tadatsugu Imamura ◽  
Kentaro Tohma ◽  
...  

2017 ◽  
Vol 91 (13) ◽  
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Normand Blais ◽  
Martin Gagné ◽  
Yoshitomo Hamuro ◽  
Patrick Rheault ◽  
Martine Boyer ◽  
...  

ABSTRACT The human respiratory syncytial virus (hRSV) fusion (F) protein is considered a major target of the neutralizing antibody response to hRSV. This glycoprotein undergoes a major structural shift from the prefusion (pre-F) to the postfusion (post-F) state at the time of virus-host cell membrane fusion. Recent evidences suggest that the pre-F state is a superior target for neutralizing antibodies compared to the post-F state. Therefore, for vaccine purposes, we have designed and characterized a recombinant hRSV F protein, called Pre-F-GCN4t, stabilized in a pre-F conformation. To show that Pre-F-GCN4t does not switch to a post-F conformation, it was compared with a recombinant post-F molecule, called Post-F-XC. Pre-F-GCN4t was glycosylated and trimeric and displayed a conformational stability different from that of Post-F-XC, as shown by chemical denaturation. Electron microscopy analysis suggested that Pre-F-GCN4t adopts a lollipop-like structure. In contrast, Post-F-XC had a typical elongated conical shape. Hydrogen/deuterium exchange mass spectrometry demonstrated that the two molecules had common rigid folding core and dynamic regions and provided structural insight for their biophysical and biochemical properties and reactivity. Pre-F-GCN4t was shown to deplete hRSV-neutralizing antibodies from human serum more efficiently than Post-F-XC. Importantly, Pre-F-GCN4t was also shown to bind D25, a highly potent monoclonal antibody specific for the pre-F conformation. In conclusion, this construct presents several pre-F characteristics, does not switch to the post-F conformation, and presents antigenic features required for a protective neutralizing antibody response. Therefore, Pre-F-GCN4t can be considered a promising candidate vaccine antigen. IMPORTANCE Human respiratory syncytial virus (RSV) is a global leading cause of infant mortality and adult morbidity. The development of a safe and efficacious RSV vaccine remains an important goal. The RSV class I fusion (F) glycoprotein is considered one of the most promising vaccine candidates, and recent evidences suggest that the prefusion (pre-F) state is a superior target for neutralizing antibodies. Our study presents the physicochemical characterization of Pre-F-GCN4t, a molecule designed to be stabilized in the pre-F conformation. To confirm its pre-F conformation, Pre-F-GCN4t was analyzed in parallel with Post-F-XC, a molecule in the post-F conformation. Our results show that Pre-F-GCN4t presents characteristics of a stabilized pre-F conformation and support its use as an RSV vaccine antigen. Such an antigen may represent a significant advance in the development of an RSV vaccine.


2016 ◽  
Vol 89 (1) ◽  
pp. 49-54 ◽  
Author(s):  
Swati Saxena ◽  
Dharamveer Singh ◽  
Amreen Zia ◽  
Jyoti Umrao ◽  
Naveen Srivastava ◽  
...  

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