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Tavakoli, P.

Publications and source records attributed to Tavakoli, P..

2 recordsLinked to original sources

TYK2 inhibition enhances Treg differentiation and function while preventing Th1 and Th17 differnetiation

Janus kinase (JAK) inhibitors are widely use to inhibit inflammatory cytokine signalling in autoimmune and inflammatory diseases but their effect on regulatory T cells (Tregs) is poorly characterized. We investigated the effect of JAK inhibition on human Treg differentiation, phenotype, and function using a JAK inhibitor, upadacitinib, in comparison to BMS-986202, a selective Tyrosine kinase 2 (TYK2) inhibitor. Both upadacitinib and BMS-986202 blocked the differentiation of naive CD4+ T cells into Th1 and Th17 cells, but only BMS-986202 spared IL-2 signalling and Treg differentiation. BMS-986202 also increased Treg suppressive function and stability under Th1- and Th17-polarizing conditions, whereas upadacitinib significantly impaired the phenotype and viability of ex vivo Tregs. Analysis of lamina propria mononuclear cells from patients with inflammatory bowel disease revealed that, under Th17 polarizing conditions, BMS-986202 redirected CD4+ T cells towards a Treg phenotype. The Treg-sparing and enhancing properties of TYK2 inhibition suggest that TYK2 inhibitors are a promising pharmacological approach for tolerance induction. eTOC SUMMARYTuomela et al. report that TYK2 inhibition does not affect human Treg induction from naive CD4+ T cells, promotes Treg differentiation in lamina propria-derived T cells, and increases blood-derived Treg stability/function. In contrast, JAK inhibition strongly impairs Treg function.

immunology↗

The primary sclerosing cholangitis and ulcerative colitis colonic mucosa defined through paired microbial and single-cell RNA sequencing

Primary sclerosing cholangitis (PSC) is a chronic progressing cholestatic disease that often co-occurs with inflammatory bowel disease (PSC-IBD). PSC-IBD affecting the colon (PSC-UC) is likened clinically to ulcerative colitis (UC), however differences include a right colon dominance, less severe inflammatory presentation and a greater lifetime risk of colorectal cancer. To understand the basis of clinical differences, we combine single-cell mRNA and antigen receptor sequencing, 16S ribosomal DNA analysis and spatial transcriptomics on biopsies from multiple colon regions of both PSC-UC and UC patients in remission or at the time of relapse. We discover disease-specific cell and microbial profiles between these cohorts, highlighting a distinct landscape in the right colon of PSC-UC patients and an epithelial-endothelial cell state that may contribute to intestinal permeability in UC. We show the expansion of an activated mast cell state in both diseases during flare, and demonstrate the requirement of TMEM176B in sustaining this activated state. Together this work demonstrates that PSC-UC and UC are distinct diseases with common cell mechanisms during inflammation, providing cellular and microbial insights to improve treatment of both patient cohorts.

cell biology↗