SummaryThe intestinal tract is in intimate contact with the commensal microflora. Nevertheless, how commensals communicate with cells to ensure immune homeostasis is still unclear. In this study, we found that gut flora DNA (gfDNA) plays a major role in intestinal homeostasis through Toll-like receptor 9 (TLR9) engagement. Tlr9−/− mice displayed increased frequencies of CD4+Foxp3+ regulatory T (Treg) cells within intestinal effector sites and reduced constitutive IL-17- and IFN-γ-producing effector T (Teff) cells. Complementing this, gfDNA limited lamina propria dendritic cell-induced Treg cell conversion in vitro. Further, Treg/Teff cell disequilibrium in Tlr9−/− mice led to impaired immune responses to oral infection and to oral vaccinati...
AbstractToll-like receptors (TLRs) play a crucial role in host defense against microbial infection. ...
Mammals harbor a dense commensal microbiota in the colon. Regulatory T (Treg) cells are known to lim...
IL-17-producing T-helper cells (Th17) are potent effectors of inflammation, but little is known abou...
SummaryThe intestinal tract is in intimate contact with the commensal microflora. Nevertheless, how ...
In this issue of Immunity, Hall et al. (2008) demonstrate that commensal bacterial DNA can suppress ...
SummaryMammals harbor a dense commensal microbiota in the colon. Regulatory T (Treg) cells are known...
To maintain intestinal health, the immune system must faithfully respond to antigens from pathogenic...
SummaryTolerance to food antigen manifests in the absence and/or suppression of antigen-specific imm...
SummaryThe gastrointestinal tract of mammals is inhabited by hundreds of distinct species of commens...
Quantitative and qualitative aspects of commensal bacteria determine the active and quiescent status...
Interactions with commensal microbes shape host immunity on multiple levels and play a pivotal role ...
Regulatory T cells help maintain intestinal homeostasis by preventing inappropriate innate and adapt...
Peripheral mechanisms preventing autoimmunity and maintaining tolerance to commensal microbiota invo...
The gastrointestinal tract is replete with commensal microbes and dietary nutrients that provide hom...
A reciprocal interaction exists between the gut microbiota and the immune system. Regulatory T (Treg...
AbstractToll-like receptors (TLRs) play a crucial role in host defense against microbial infection. ...
Mammals harbor a dense commensal microbiota in the colon. Regulatory T (Treg) cells are known to lim...
IL-17-producing T-helper cells (Th17) are potent effectors of inflammation, but little is known abou...
SummaryThe intestinal tract is in intimate contact with the commensal microflora. Nevertheless, how ...
In this issue of Immunity, Hall et al. (2008) demonstrate that commensal bacterial DNA can suppress ...
SummaryMammals harbor a dense commensal microbiota in the colon. Regulatory T (Treg) cells are known...
To maintain intestinal health, the immune system must faithfully respond to antigens from pathogenic...
SummaryTolerance to food antigen manifests in the absence and/or suppression of antigen-specific imm...
SummaryThe gastrointestinal tract of mammals is inhabited by hundreds of distinct species of commens...
Quantitative and qualitative aspects of commensal bacteria determine the active and quiescent status...
Interactions with commensal microbes shape host immunity on multiple levels and play a pivotal role ...
Regulatory T cells help maintain intestinal homeostasis by preventing inappropriate innate and adapt...
Peripheral mechanisms preventing autoimmunity and maintaining tolerance to commensal microbiota invo...
The gastrointestinal tract is replete with commensal microbes and dietary nutrients that provide hom...
A reciprocal interaction exists between the gut microbiota and the immune system. Regulatory T (Treg...
AbstractToll-like receptors (TLRs) play a crucial role in host defense against microbial infection. ...
Mammals harbor a dense commensal microbiota in the colon. Regulatory T (Treg) cells are known to lim...
IL-17-producing T-helper cells (Th17) are potent effectors of inflammation, but little is known abou...