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International Journal of Pharmaceutics|January 17, 2004
Electroporation-mediated delivery of molecules to model intestinal epitheliaEsi B Ghartey-Tagoe, Jeremy S Morgan, Kashif Ahmed, et al.Poultry Science|November 18, 2015
Wild-type and mutant AvrA- Salmonella induce broadly similar immune pathways in the chicken ceca with key differences in signaling intermediates and inflammationRyan J Arsenault, Kenneth J Genovese, Haiqi He, et al.American Journal of Physiology. Gastrointestinal and Liver Physiology|April 19, 2003
TLR5-mediated activation of p38 MAPK regulates epithelial IL-8 expression via posttranscriptional mechanismYimin Yu, Hui Zeng, Sean Lyons, et al.Journal of Immunology (Baltimore, Md. : 1950)|December 26, 2008
The bacterial fermentation product butyrate influences epithelial signaling via reactive oxygen species-mediated changes in cullin-1 neddylationAmrita Kumar, Huixia Wu, Lauren S Collier-Hyams, et al.Infection and Immunity|January 16, 2008
Toll-like receptor 5-deficient mice have dysregulated intestinal gene expression and nonspecific resistance to Salmonella-induced typhoid-like diseaseMatam Vijay-Kumar, Jesse D Aitken, Amrita Kumar, et al.The Journal of Biological Chemistry|June 17, 2004
STAT signaling underlies difference between flagellin-induced and tumor necrosis factor-alpha-induced epithelial gene expressionYimin Yu, Hui Zeng, Matam Vijay-Kumar, et al.American Journal of Physiology. Gastrointestinal and Liver Physiology|September 24, 2005
Flagellin/TLR5 responses in epithelia reveal intertwined activation of inflammatory and apoptotic pathwaysHui Zeng, Huixia Wu, Valerie Sloane, et al.Inflammatory Bowel Diseases|March 30, 2007
Activation of toll-like receptor 3 protects against DSS-induced acute colitisMatam Vijay-Kumar, Huixia Wu, Jesse Aitken, et al.Nature Microbiology|August 31, 2016
The microenvironment of injured murine gut elicits a local pro-restitutive microbiotaAshfaqul Alam, Giovanna Leoni, Miguel Quiros, et al.Gastroenterology|April 2, 2019
Interactions Between Commensal Bacteria and Enteric Neurons, via FPR1 Induction of ROS, Increase Gastrointestinal Motility in MiceBindu Chandrasekharan, Bejan J Saeedi, Ashfaqul Alam, et al.Pageof 11