Increased and prolonged human norovirus infection in RAG2/IL2RG deficient gnotobiotic pigs with severe combined immunodeficiency

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Shaohua Lei
Junghyun Ryu
Ke Wen
Erica Twitchell
Tammy Bui
Ashwin Ramesh
Mariah Weiss
Guohua Li
Helen Samuel
Sherrie Clark-Deener
Xi Jiang
Kiho Lee
Lijuan Yuan
机构
[1] Virginia-Maryland College of Veterinary Medicine,Department of Biomedical Sciences and Pathobiology
[2] Virginia Tech,Department of Animal and Poultry Sciences
[3] College of Agriculture and Life Sciences,Department of Large Animal Clinical Sciences
[4] Virginia Tech,Division of Infectious Diseases
[5] Virginia-Maryland College of Veterinary Medicine,undefined
[6] Virginia Tech,undefined
[7] Cincinnati Children’s Hospital Medical Center,undefined
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Application of genetically engineered (GE) large animals carrying multi-allelic modifications has been hampered by low efficiency in production and extended gestation period compared to rodents. Here, we rapidly generated RAG2/IL2RG double knockout pigs using direct injection of CRISPR/Cas9 system into developing embryos. RAG2/IL2RG deficient pigs were immunodeficient, characterized by depletion of lymphocytes and either absence of or structurally abnormal immune organs. Pigs were maintained in gnotobiotic facility and evaluated for human norovirus (HuNoV) infection. HuNoV shedding lasted for 16 days in wild type pigs, compared to 27 days (until the end of trials) in RAG2/IL2RG deficient pigs. Additionally, higher HuNoV titers were detected in intestinal tissues and contents and in blood, indicating increased and prolonged HuNoV infection in RAG2/IL2RG deficient pigs and the importance of lymphocytes in HuNoV clearance. These results suggest that GE immunodeficient gnotobiotic pigs serve as a novel model for biomedical research and will facilitate HuNoV studies.
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