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1.
Gut Pathog ; 9: 9, 2017.
Article in English | MEDLINE | ID: mdl-28289440

ABSTRACT

BACKGROUND: Toll-like receptors (TLRs) are the major pattern recognition receptors that mediate sensing of a wide range of microorganisms. TLR2 forms heterodimers with either TLR1 or TLR6, broadening its ligand diversity against pathogens. TLR1, TLR2 and TLR6 have been implicated in the recognition of Candida albicans, an opportunistic fungal pathogen that colonizes the gastrointestinal tract. In this study, we explored whether the deficiency in TLR1, TLR2 or TLR6 impacts C. albicans colonization and inflammation-associated colonic injury in the dextran sulfate sodium (DSS)-induced colitis in mice. RESULTS: DSS treatment and C. albicans challenge induced greater weight loss, worse clinical signs of inflammation, higher histopathologic scores, and increased mortality rates in TLR1-/- and TLR2-/- mice when compared to TLR6-/- and wild-type mice. The number of C. albicans colonies in the stomach, colon and feces was decreased in TLR6-/- mice as compared to TLR2-/-, TLR1-/- and wild-type mice. Interestingly, the population of E. coli in colonic luminal contents, intestinal permeability to FITC-dextran and cytokine expression were significantly increased in TLR1-/- and TLR2-/- mice, while they were decreased in TLR6-/- mice. CONCLUSION: In contrast to TLR6, both TLR1 and TLR2 deficiencies increased intestinal inflammation, and the overgrowth of C. albicans and E. coli populations in the colitis model, suggesting the involvement of TLR1 and TLR2 in epithelial homeostasis, and a role of TLR6 in increasing intestinal inflammation in response to pathogen-sensing.

2.
Am J Physiol Heart Circ Physiol ; 311(3): H725-34, 2016 09 01.
Article in English | MEDLINE | ID: mdl-27288438

ABSTRACT

Platelets are capable of binding, aggregating, and internalizing microorganisms, which enhances the elimination of pathogens from the blood. The yeast Candida albicans is a pathobiont causing life-threatening invasive infections. Its cell wall contains ß-1,3 glucans that are known to trigger a wide range of host cell activities and to circulate during infection. We studied the effect of ß-1,3 glucan fractions (BGFs) consisting of diglucosides (Glc2), tetraglucosides (Glc4), and pentaglucosides (Glc5) on human platelets, their mechanisms of action, and their possible impact on host defenses. The effect of BGFs on the coagulation process was determined by measuring thrombin generation. Platelets pretreated with BGFs were analyzed in terms of activation, receptor expression, aggregation, and adhesion to neutrophils and to C. albicans The results show that BGFs affected the endogenous thrombin potential in a concentration-dependent manner. For platelet activation, BGFs at a low concentration (2 µmol/l) reduced ATP release and prevented the phosphorylation of protein kinase C. BGFs diminished the expression of P-selectin and the activation of αIIbß3 BGFs decreased platelet aggregation and the interaction between thrombin-stimulated platelets and neutrophils, fibrinogen, and C. albicans GLc5 decreased ATP release and TGF-ß1 production in response to TLR4 upregulation in thrombin-stimulated platelets, but TLR4 blockage abolished the effect of BGFs on platelets. This study provides evidence that fungal pentaglucosides modulate platelet activity mediated via TLR4 stimulation and reduce platelet-neutrophil interaction.


Subject(s)
Blood Platelets/drug effects , Glucosides/pharmacology , Platelet Activation/drug effects , Platelet Adhesiveness/drug effects , Platelet Aggregation/drug effects , Toll-Like Receptor 4/metabolism , beta-Glucans/pharmacology , Adenosine Triphosphate/metabolism , Blood Platelets/metabolism , Candida albicans , Fibrinogen/drug effects , Fibrinogen/metabolism , Fungi/chemistry , Humans , Neutrophils , P-Selectin/drug effects , P-Selectin/metabolism , Phosphorylation , Platelet Glycoprotein GPIIb-IIIa Complex/drug effects , Platelet Glycoprotein GPIIb-IIIa Complex/metabolism , Protein Kinase C/drug effects , Protein Kinase C/metabolism , Real-Time Polymerase Chain Reaction , Thrombin/drug effects , Thrombin/metabolism , Toll-Like Receptor 4/antagonists & inhibitors , Transforming Growth Factor beta1/drug effects , Transforming Growth Factor beta1/metabolism , Up-Regulation
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