Cargando…

Radix Isatidis polysaccharide (RIP) resists the infection of QX-type infectious bronchitis virus via the MDA5/TLR3/IRF7 signaling pathway

Although vaccines play a major role in the prevention of infectious bronchitis (IB), Anti-IB drugs still have great potential in poultry production. Radix Isatidis polysaccharide (RIP) is a crude extract of Banlangen with antioxidant, antibacterial, antiviral, and multiple immunomodulatory functions...

Descripción completa

Detalles Bibliográficos
Autores principales: Xiang, Xuelian, Lv, Jiadai, Dong, Mengyi, Li, Nianling, Li, Yongxin, Wang, Andong, Shen, Yuxi, Li, Shuyun, Xu, Jing, Cui, Min, Han, Xinfeng, Xia, Jing, Huang, Yong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9958488/
https://www.ncbi.nlm.nih.gov/pubmed/36796247
http://dx.doi.org/10.1016/j.psj.2023.102534
_version_ 1784895036963422208
author Xiang, Xuelian
Lv, Jiadai
Dong, Mengyi
Li, Nianling
Li, Yongxin
Wang, Andong
Shen, Yuxi
Li, Shuyun
Xu, Jing
Cui, Min
Han, Xinfeng
Xia, Jing
Huang, Yong
author_facet Xiang, Xuelian
Lv, Jiadai
Dong, Mengyi
Li, Nianling
Li, Yongxin
Wang, Andong
Shen, Yuxi
Li, Shuyun
Xu, Jing
Cui, Min
Han, Xinfeng
Xia, Jing
Huang, Yong
author_sort Xiang, Xuelian
collection PubMed
description Although vaccines play a major role in the prevention of infectious bronchitis (IB), Anti-IB drugs still have great potential in poultry production. Radix Isatidis polysaccharide (RIP) is a crude extract of Banlangen with antioxidant, antibacterial, antiviral, and multiple immunomodulatory functions. The aim of this study was to explore the innate immune mechanisms responsible for RIP-mediated alleviation of infectious bronchitis virus (IBV)-induced kidney lesions in chickens. Specific-pathogen-free (SPF) chicken and chicken embryo kidney (CEK) cells cultures were pretreated with RIP and then infected with the QX-type IBV strain, Sczy3. Morbidity, mortality, and tissue mean lesion scores were calculated for IBV-infected chickens, and the viral loads, inflammatory factor gene mRNA expression levels, and innate immune pathway gene mRNA expression levels in infected chickens and CEK cell cultures were determined. The results show that RIP could alleviate IBV-induced kidney damage, decrease CEK cells susceptibility to IBV infection, and reduce viral loads. Additionally, RIP reduced the mRNA expression levels of the inflammatory factors IL-6, IL-8, and IL-1β by decreasing the mRNA expression level of NF-κB. Conversely, the expression levels of MDA5, TLR3, STING, Myd88, IRF7, and IFN-β were increased, indicating that RIP conferred resistance to QX-type IBV infection via the MDA5, TLR3, IRF7 signaling pathway. These results provide a reference for both further research into the antiviral mechanisms of RIP and the development of preventative and therapeutic drugs for IB.
format Online
Article
Text
id pubmed-9958488
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-99584882023-02-26 Radix Isatidis polysaccharide (RIP) resists the infection of QX-type infectious bronchitis virus via the MDA5/TLR3/IRF7 signaling pathway Xiang, Xuelian Lv, Jiadai Dong, Mengyi Li, Nianling Li, Yongxin Wang, Andong Shen, Yuxi Li, Shuyun Xu, Jing Cui, Min Han, Xinfeng Xia, Jing Huang, Yong Poult Sci IMMUNOLOGY, HEALTH AND DISEASE Although vaccines play a major role in the prevention of infectious bronchitis (IB), Anti-IB drugs still have great potential in poultry production. Radix Isatidis polysaccharide (RIP) is a crude extract of Banlangen with antioxidant, antibacterial, antiviral, and multiple immunomodulatory functions. The aim of this study was to explore the innate immune mechanisms responsible for RIP-mediated alleviation of infectious bronchitis virus (IBV)-induced kidney lesions in chickens. Specific-pathogen-free (SPF) chicken and chicken embryo kidney (CEK) cells cultures were pretreated with RIP and then infected with the QX-type IBV strain, Sczy3. Morbidity, mortality, and tissue mean lesion scores were calculated for IBV-infected chickens, and the viral loads, inflammatory factor gene mRNA expression levels, and innate immune pathway gene mRNA expression levels in infected chickens and CEK cell cultures were determined. The results show that RIP could alleviate IBV-induced kidney damage, decrease CEK cells susceptibility to IBV infection, and reduce viral loads. Additionally, RIP reduced the mRNA expression levels of the inflammatory factors IL-6, IL-8, and IL-1β by decreasing the mRNA expression level of NF-κB. Conversely, the expression levels of MDA5, TLR3, STING, Myd88, IRF7, and IFN-β were increased, indicating that RIP conferred resistance to QX-type IBV infection via the MDA5, TLR3, IRF7 signaling pathway. These results provide a reference for both further research into the antiviral mechanisms of RIP and the development of preventative and therapeutic drugs for IB. Elsevier 2023-01-24 /pmc/articles/PMC9958488/ /pubmed/36796247 http://dx.doi.org/10.1016/j.psj.2023.102534 Text en © 2023 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle IMMUNOLOGY, HEALTH AND DISEASE
Xiang, Xuelian
Lv, Jiadai
Dong, Mengyi
Li, Nianling
Li, Yongxin
Wang, Andong
Shen, Yuxi
Li, Shuyun
Xu, Jing
Cui, Min
Han, Xinfeng
Xia, Jing
Huang, Yong
Radix Isatidis polysaccharide (RIP) resists the infection of QX-type infectious bronchitis virus via the MDA5/TLR3/IRF7 signaling pathway
title Radix Isatidis polysaccharide (RIP) resists the infection of QX-type infectious bronchitis virus via the MDA5/TLR3/IRF7 signaling pathway
title_full Radix Isatidis polysaccharide (RIP) resists the infection of QX-type infectious bronchitis virus via the MDA5/TLR3/IRF7 signaling pathway
title_fullStr Radix Isatidis polysaccharide (RIP) resists the infection of QX-type infectious bronchitis virus via the MDA5/TLR3/IRF7 signaling pathway
title_full_unstemmed Radix Isatidis polysaccharide (RIP) resists the infection of QX-type infectious bronchitis virus via the MDA5/TLR3/IRF7 signaling pathway
title_short Radix Isatidis polysaccharide (RIP) resists the infection of QX-type infectious bronchitis virus via the MDA5/TLR3/IRF7 signaling pathway
title_sort radix isatidis polysaccharide (rip) resists the infection of qx-type infectious bronchitis virus via the mda5/tlr3/irf7 signaling pathway
topic IMMUNOLOGY, HEALTH AND DISEASE
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9958488/
https://www.ncbi.nlm.nih.gov/pubmed/36796247
http://dx.doi.org/10.1016/j.psj.2023.102534
work_keys_str_mv AT xiangxuelian radixisatidispolysaccharideripresiststheinfectionofqxtypeinfectiousbronchitisvirusviathemda5tlr3irf7signalingpathway
AT lvjiadai radixisatidispolysaccharideripresiststheinfectionofqxtypeinfectiousbronchitisvirusviathemda5tlr3irf7signalingpathway
AT dongmengyi radixisatidispolysaccharideripresiststheinfectionofqxtypeinfectiousbronchitisvirusviathemda5tlr3irf7signalingpathway
AT linianling radixisatidispolysaccharideripresiststheinfectionofqxtypeinfectiousbronchitisvirusviathemda5tlr3irf7signalingpathway
AT liyongxin radixisatidispolysaccharideripresiststheinfectionofqxtypeinfectiousbronchitisvirusviathemda5tlr3irf7signalingpathway
AT wangandong radixisatidispolysaccharideripresiststheinfectionofqxtypeinfectiousbronchitisvirusviathemda5tlr3irf7signalingpathway
AT shenyuxi radixisatidispolysaccharideripresiststheinfectionofqxtypeinfectiousbronchitisvirusviathemda5tlr3irf7signalingpathway
AT lishuyun radixisatidispolysaccharideripresiststheinfectionofqxtypeinfectiousbronchitisvirusviathemda5tlr3irf7signalingpathway
AT xujing radixisatidispolysaccharideripresiststheinfectionofqxtypeinfectiousbronchitisvirusviathemda5tlr3irf7signalingpathway
AT cuimin radixisatidispolysaccharideripresiststheinfectionofqxtypeinfectiousbronchitisvirusviathemda5tlr3irf7signalingpathway
AT hanxinfeng radixisatidispolysaccharideripresiststheinfectionofqxtypeinfectiousbronchitisvirusviathemda5tlr3irf7signalingpathway
AT xiajing radixisatidispolysaccharideripresiststheinfectionofqxtypeinfectiousbronchitisvirusviathemda5tlr3irf7signalingpathway
AT huangyong radixisatidispolysaccharideripresiststheinfectionofqxtypeinfectiousbronchitisvirusviathemda5tlr3irf7signalingpathway