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Biology subjects

Brown Romero, D.

Publications and source records attributed to Brown Romero, D..

2 recordsLinked to original sources

Human hepatic stellate cells orchestrate the accumulation and function of CD103+ tissue-resident CD8+ T-cells in liver fibrosis

Tissue-resident memory cells (TRM) contribute to protective and pathogenic responses in the liver, yet precisely how hepatic TRM adapt and integrate cues from the underlying stroma and extracellular matrix (ECM) in chronic liver disease (CLD) has yet to be fully defined. Here we describe a role for activated myofibroblast-like hepatic stellate cells (HSCs) in the accumulation and in situ localisation of CD8+ TRM in the CLD liver. Activated HSCs drive a program of tissue residence in activated, tissue-infiltrating CD8+ T-cells in a TGF{beta}-dependent manner. We show upregulation of CD103, ECM-binding integrins and adhesion molecules driven by TGF{beta} which together contribute to the sequestration of TRM within the ECM-rich fibrotic niche. Ex vivo, hepatic CD103+ TRM correlate with the extent of ECM deposited, express an altered repertoire of co-stimulatory and co-inhibitory receptors, transcriptional regulators of cellular exhaustion and produce less proinflammatory mediators upon TCR engagement in CLD than in health. Through expression of several co-inhibitory ligands, we further demonstrate the potential for activated HSCs to acquire an immunomodulatory phenotype and limit the capacity of CD103+ TRM to produce anti-viral and anti-tumour mediators upon antigen encounter. Finally, we demonstrate that strategies to block such regulatory pathways, including the PD1:PD-L1/PD-L2 axis, have the potential to restore the antigen-specific effector function of tissue-compartmentalised CD103+ TRM and thus contribute to improving the effectiveness of local immunosurveillance in CLD. One Sentence Summary: Activated hepatic stellate cells characteristic of liver fibrosis orchestrate an accumulation of a CD103+ TRM population with a reduced capacity for antigen-specific effector function in human CLD.

immunology↗

Lactobacillus crispatus S-layer proteins modulate innate immune response and inflammation in the lower female reproductive tract.

Lactobacillus species dominance of the vaginal microbiome is a hallmark of vaginal health. Pathogen displacement of vaginal lactobacilli drives innate immune activation and mucosal barrier disruption which increases the risks of STI acquisition and, in pregnancy, of preterm birth. Using cell reporter systems, we describe differential TLR mediated activation of the proinflammatory transcription factor NF-{kappa}B by vaginal pathogens and commensals. Vaginal Lactobacillus strains associated with optimal health were shown to selectively interact with anti-inflammatory innate immune receptors whereas species associated with suboptimal health including L. iners and Gardnerella vaginalis interacted with both pro- and anti-inflammatory receptors. Anti-inflammatory action of L. crispatus was regulated by surface layer protein (SLPs)-mediated shielding of TLR ligands and selective interaction with anti-inflammatory receptor, DC-SIGN. In pregnant women, cervicovaginal SLPs were predominately associated with Lactobacillus-enriched microbiota. These data offer new mechanistic insights into how vaginal microbiota modulate host immune response and influences risk of preterm birth.

microbiology↗