|  Help  |  About  |  Contact Us

Publication : Critical role of MAVS in the protection against Clostridium difficile-induced colitis.

First Author  Zhang P Year  2018
Journal  Microb Pathog Volume  125
Pages  306-312 PubMed ID  30267893
Mgi Jnum  J:295651 Mgi Id  MGI:6454174
Doi  10.1016/j.micpath.2018.09.035 Citation  Zhang P, et al. (2018) Critical role of MAVS in the protection against Clostridium difficile-induced colitis. Microb Pathog 125:306-312
abstractText  Clostridium difficile (C. difficile) is an opportunistic bacteria that flourishes in intestinal flora is altered by antibiotic use and can cause large intestinal colitis if left untreated. The mechanism of MAVS-mediated innate immune signaling in response to C. difficile infection remains unclear. This knowledge gap was addressed in the present research by administration of an antibiotic cocktail to WT and MAVS-deficient (MAVS-/-) mice for five days, followed by the oral administration of C. difficile VPI 10,463 strain (1x10(7) colony forming units). Subjects were subsequently observed for another eight days for signs of colitis. Colon and cecum tissue samples were harvested from naive and infected mice two days post-infection for histopathologic analysis. Colon tissue samples were harvested to analyze cytokine gene expression and RegIIIbeta/gamma gene expression. MAVS-deficient mice suffered significantly higher mortality rates as well as increased mucosal tissue inflammation and damage after C. difficile infection (P <0.05). MAVS-/- mice displayed a significantly greater increase in IL-6, IL-1beta, TNF-alpha and IFN-beta expression in colon tissues in contrast to WT mice challenged with C. difficile (P <0.05). RegIIIbeta/gamma gene expression was severely attenuated in the colons of MAVS-/- mice (P <0.05). These findings underscore MAVS as a vital innate immune system mediator in the intestinal mucosa and further suggests that MAVS-mediated maintenance of the intestinal epithelial barrier is an important defense against enteric pathogens.
Quick Links:
 
Quick Links:
 

Expression

Publication --> Expression annotations

 

Other

5 Authors

1 Bio Entities

0 Expression