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van der Merwe, S.

Publications and source records attributed to van der Merwe, S..

2 recordsLinked to original sources

Cirrhosis-associated immune dysfunction presents with preserved circulating lymphocyte function and altered intestinal intraepithelial lymphocyte profile

Bacterial infections are major drivers of decompensation and mortality in cirrhosis, yet the mechanisms underlying cirrhosis-associated immune dysfunction remain incompletely understood. Although current models frequently invoke adaptive immune exhaustion, intestinal intraepithelial lymphocytes (IELs), a central barrier immune compartment responsible for epithelial surveillance and microbial containment, have remained largely unexplored in cirrhosis. Here, we performed integrated immune profiling of paired duodenal biopsies and peripheral blood from healthy volunteers and patients with compensated or decompensated cirrhosis using spectral flow cytometry, plasma proteomics, immunofluorescence, and single-cell RNA sequencing. The healthy duodenal epithelium was dominated by CD8{beta} IELs, whereas cirrhosis was associated with marked depletion of these cells together with expansion of innate cytotoxic populations. Residual IELs exhibited attenuation of antimicrobial transcriptional programs alongside enrichment of innate-like cytotoxic pathways. Loss of CD8{beta} IELs was associated with coordinated reduction of CCR9 surface expression across circulating and mucosal CD8 T-cell compartments together with persistent systemic elevation of CCL25. In contrast, circulating lymphocytes retained functional competence and lacked enrichment of canonical exhaustion markers despite progressive inflammatory remodeling. Collectively, these findings identify defective intestinal IEL compartmentalization as a central feature of cirrhosis-associated immune dysfunction and implicate dysregulation of the CCL25-CCR9 axis in impaired mucosal immune surveillance. HighlightsO_LICirrhosis-associated immune dysfunction reflects defective mucosal immune compartmentalization rather than global adaptive immune paralysis C_LIO_LICirculating lymphocytes retain effector function and do not exhibit canonical exhaustion phenotypes C_LIO_LICD8{beta} intraepithelial lymphocytes are selectively depleted from the duodenal epithelium in cirrhosis C_LIO_LIPersistent systemic CCL25 elevation is associated with coordinated CCR9 loss across mucosal and circulating CD8 T-cell compartments C_LI

immunology↗

Spatial single-cell interactome and niche-specific molecular signatures in alcohol-related liver disease

Alcohol-related liver disease (ALD) remains a major global health burden with limited therapeutic options due to an incomplete understanding of its underlying molecular mechanisms and cellular crosstalk. Here, we applied ultra-high resolution (on 2 {micro}m spots) spatial transcriptomics to a cirrhotic liver tissue obtained from an end-stage ALD patient, analyzing >265,000 spatially resolved cells with further validation on single-cell and single-nuclei datasets from patients with ALD cirrhosis. Our analysis delineated distinct cellular sub-populations and molecular landscapes across fibrotic, vascular, and parenchymal niches of ALD cirrhosis. We identified robust zonation of hepatocytes, hepatic stellate cells, and diverse immune subpopulations, including enrichment of pro-inflammatory T cells and dendritic cells in the fibrotic niche and MARCO+ tissue-resident macrophages localizing mostly in parenchymal areas. Analysis of spatial metrics assigned expression of WNT4, RCAN3, PPIAL4G, PLA2G5, and SLC6A9 to the fibrotic environment in ALD. Differential expression and ligand-receptor interactome analyses revealed niche-specific signaling, with marked CCL19-CCR7 activity in fibrotic regions and DLL4-NOTCH3 crosstalk in vascular compartments. Notably, WNT4+ fibroblasts emerged as key mediators of extracellular matrix remodeling and chemoattraction, particularly via CCL19-mediated signaling towards CD8+ T cells, which was validated on single-cell resolution within the ALD cirrhotic liver in external datasets. These spatial and single-cell findings highlight novel potential therapeutic targets for patients with ALD cirrhosis.

systems biology↗