scholarly journals The Effects of Simvastatin or Interferon-α on Infectivity of Human Norovirus Using a Gnotobiotic Pig Model for the Study of Antivirals

PLoS ONE ◽  
2012 ◽  
Vol 7 (7) ◽  
pp. e41619 ◽  
Author(s):  
Kwonil Jung ◽  
Qiuhong Wang ◽  
Yunjeong Kim ◽  
Kelly Scheuer ◽  
Zhenwen Zhang ◽  
...  
2015 ◽  
Vol 81 (19) ◽  
pp. 6679-6687 ◽  
Author(s):  
Fangfei Lou ◽  
Mu Ye ◽  
Yuanmei Ma ◽  
Xinhui Li ◽  
Erin DiCaprio ◽  
...  

ABSTRACTHuman norovirus (NoV) is responsible for over 90% of outbreaks of acute nonbacterial gastroenteritis worldwide and accounts for 60% of cases of foodborne illness in the United States. Currently, the infectivity of human NoVs is poorly understood due to the lack of a cell culture system. In this study, we determined the survival of a human NoV genogroup II, genotype 4 (GII.4) strain in seeded oyster homogenates after high-pressure processing (HPP) using a novel receptor binding assay and a gnotobiotic pig model. Pressure conditions of 350 MPa at 0°C for 2 min led to a 3.7-log10reduction in the number of viral RNA copies in oysters, as measured by the porcine gastric mucin-conjugated magnetic bead (PGM-MB) binding assay and real-time RT-PCR, whereas pressure conditions of 350 MPa at 35°C for 2 min achieved only a 1-log10reduction in the number of RNA copies. Newborn gnotobiotic piglets orally fed oyster homogenate treated at 350 MPa and 0°C for 2 min did not have viral RNA shedding in feces, histologic lesions, or viral replication in the small intestine. In contrast, gnotobiotic piglets fed oysters treated at 350 MPa and 35°C for 2 min had high levels of viral shedding in feces and exhibited significant histologic lesions and viral replication in the small intestine. Collectively, these data demonstrate that (i) human NoV survival estimated by anin vitroPGM-MB virus binding assay is consistent with the infectivity determined by anin vivognotobiotic piglet model and (ii) HPP is capable of inactivating a human NoV GII.4 strain at commercially acceptable pressure levels.


Vaccine ◽  
2018 ◽  
Vol 36 (42) ◽  
pp. 6270-6281 ◽  
Author(s):  
Ayako Miyazaki ◽  
Sukumar Kandasamy ◽  
Husheem Michael ◽  
Stephanie N. Langel ◽  
Francine C. Paim ◽  
...  

2014 ◽  
Vol 3 (1) ◽  
pp. 1-12 ◽  
Author(s):  
Xingdong Yang ◽  
Guohua Li ◽  
Ke Wen ◽  
Tammy Bui ◽  
Fangning Liu ◽  
...  

2002 ◽  
Vol 68 (1) ◽  
pp. 119-128 ◽  
Author(s):  
Cristiana Iosef ◽  
Kyeong-Ok Chang ◽  
Marli S.P. Azevedo ◽  
Linda J. Saif

Vaccine ◽  
2005 ◽  
Vol 23 (30) ◽  
pp. 3925-3936 ◽  
Author(s):  
Lijuan Yuan ◽  
Marli S.P. Azevedo ◽  
Ana M. Gonzalez ◽  
Kwang-il Jeong ◽  
Trang Van Nguyen ◽  
...  

2021 ◽  
Vol 12 ◽  
Author(s):  
Zifeng Zheng ◽  
Yuncheng Li ◽  
Mudan Zhang ◽  
Yalan Liu ◽  
Ming Fu ◽  
...  

Human norovirus (HuNoV) is the leading cause of epidemic acute gastroenteritis worldwide. Type I interferons (IFN)-α/β are highly potent cytokines that are initially identified for their essential roles in antiviral defense. It was reported that HuNoV infection did not induce IFN-β expression but was controlled in the presence of IFN-β in human intestinal enteroids and a gnotobiotic pig model, suggesting that HuNoV has likely developed evasion countermeasures. In this study, we found that a cDNA clone of GII.4 HuNoV, the predominantly circulating genotype worldwide, inhibits the production of IFN-β and identified the viral NTPase as a key component responsible for such inhibition. HuNoV NTPase not only inhibits the activity of IFN-β promoter but also the mRNA and protein production of IFN-β. Additional studies indicate that NTPase inhibits the phosphorylation and nuclear translocation of interferon-regulatory factor-3 (IRF-3), leading to the suppression of IFN-β promoter activation. Mechanistically, NTPase interacts with IkB kinase ε (IKKε), an important factor for IRF-3 phosphorylation, and such interaction blocks the association of IKKε with unanchored K48-linked polyubiquitin chains, resulting in the inhibition of IKKε phosphorylation. Further studies demonstrated that the 1-179 aa domain of NTPase which interacts with IKKε is critical for the suppression of IFN-β production. Our findings highlight the role of HuNoV NTPase in the inhibition of IFN-β production, providing insights into a novel mechanism underlying how HuNoV evades the host innate immunity.


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