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Pal, P. B.

Publications and source records attributed to Pal, P. B..

2 recordsLinked to original sources

Western diet dampens T regulatory cell function to fuel hepatic inflammation in nonalcoholic fatty liver disease

Background and aimsThe immunosuppressive T regulatory cells (Tregs) regulate immune responses and maintain immune homeostasis, yet their functions in nonalcoholic fatty liver disease (NAFLD) pathogenesis remains controversial. MethodsMice were fed a normal diet (ND) or a western diet (WD) for 16 weeks to induce NAFLD. Diphtheria toxin injection to deplete Tregs in Foxp3DTR mice or Treg induction therapy in WT mice to augment Treg numbers was initiated at twelve and eight weeks, respectively. Liver tissues from mice and NASH human subjects were analyzed by histology, confocal imaging, and qRT-PCR. ResultsWD triggered accumulation of adaptive immune cells, including Tregs and effector T cells, within the liver parenchyma. This pattern was also observed in NASH patients, where an increase in intrahepatic Tregs was noted. In the absence of adaptive immune cells in Rag1 KO mice, WD promoted accumulation of intrahepatic neutrophils and macrophages and exacerbated hepatic inflammation and fibrosis. Similarly, targeted Treg depletion exacerbated WD-induced hepatic inflammation and fibrosis. In Treg-depleted mice, hepatic injury was associated with increased accumulation of neutrophils, macrophages, and activated T cells within the liver. Conversely, induction of Tregs using recombinant IL2/IL2 mAb cocktail reduced hepatic steatosis, inflammation, and fibrosis in WD-fed mice. Analysis of intrahepatic Tregs from WD-fed mice revealed a phenotypic signature of impaired Treg function in NAFLD. Ex vivo functional studies showed that glucose and palmitate, but not fructose, impaired the immunosuppressive ability of Treg cells. ConclusionsOur findings indicate that the liver microenvironment in NAFLD impairs ability of Tregs to suppress effector immune cell activation, thus perpetuating chronic inflammation and driving NAFLD progression. These data suggest that targeted approaches aimed at restoring Treg function may represent a potential therapeutic strategy for treating NAFLD. Lay summaryIn this study, we elucidate the mechanisms contributing to the perpetuation of chronic hepatic inflammation in nonalcoholic fatty liver disease (NAFLD). We show that dietary sugar and fatty acids promote chronic hepatic inflammation in NAFLD by impairing immunosuppressive function of regulatory T cells. Finally, our preclinical data suggest that targeted approaches aimed at restoring T regulatory cell function have the potential to treat NAFLD.

pathology↗

Selective targeting of α4β7/MAdCAM-1 axis suppresses fibrosis progression in chronic liver disease

Integrin 4{beta}7+ T cells perpetuate tissue injury in chronic inflammatory diseases, yet their role in hepatic fibrosis progression remains poorly understood. Here we report increased accumulation of 4{beta}7+ T cells in the liver of people with cirrhosis relative to disease controls. Similarly, hepatic fibrosis in the established mouse model of CCl4-induced liver fibrosis was associated with enrichment of intrahepatic 4{beta}7+ CD4 and CD8 T cells. Monoclonal antibody (mAb)-mediated blockade of 4{beta}7 or its ligand mucosal addressin cell adhesion molecule (MAdCAM)-1 attenuated hepatic inflammation and prevented fibrosis progression in CCl4 treated mice. Improvement in liver fibrosis was associated with a significant decrease in the infiltration of 4{beta}7+ CD4 and CD8 T cells suggesting that 4{beta}7/MAdCAM-1 axis regulates both CD4 and CD8 T cell recruitment to the fibrotic liver, and 4{beta}7+ T cells promote hepatic fibrosis progression. Analysis of hepatic 4{beta}7+ and 4{beta}7-CD4 T cells revealed that 4{beta}7+ CD4 T cells enriched for markers of activation and proliferation demonstrating an effector phenotype. Notably, blockade of 4{beta}7 or MAdCAM-1 did not affect the recruitment of Foxp3+ regulatory T cells, demonstrating the specificity of 4{beta}7/MAdCAM-1 axis in regulating effector T cell recruitment to the liver. The findings suggest that 4{beta}7+ T cells play a critical role in promoting hepatic fibrosis progression, and mAb-mediated blockade of 4{beta}7 or MAdCAM-1 represents a promising therapeutic strategy for slowing hepatic fibrosis progression in chronic liver diseases.

immunology↗