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Biology subjects

Hewitt, R.

Publications and source records attributed to Hewitt, R..

2 recordsLinked to original sources

Multiscale single-cell assessment of the fibrotic niche in idiopathic pulmonary fibrosis

BackgroundIdiopathic pulmonary fibrosis (IPF) is a progressive, fatal disease characterised by excessive extracellular matrix deposition within the lung. Recent advances in single-cell RNA sequencing have identified distinct fibrotic populations, yet their origins and spatial relationships remain incompletely understood. MethodsUsing spatial transcriptomics and Hyperion imaging mass cytometry we compared the cellular composition in formalin fixed paraffin embedded fibrotic lesions (n=9 patients) with control lung (n=9), and cellular interactions were inferred using CellChat V2 ligand-receptor analysis. Monolayers of airway epithelial cells were used to identify changes in keratin (KRT) expression following cell detachment and cyclical mechanical stretch. ResultsSpatial multiomics profiling of human lung cells confirmed the in situ localisation of previously described IPF-enriched populations, and identified a previously unrecognized KRT5low/KRT17 epithelial population derived from airway basal cells that progressively acquiring molecular features of aberrant basaloid cells, forming a unique fibrotic niche enriched with the Secreted Phosphoprotein 1 (SPP1) positive macrophages. Functional studies demonstrated that epithelial detachment and cyclical mechanical stretch drive KRT5 reduction, providing a mechanism for the emergence of this transitional state. In addition, we also identified distinct immune-stromal niches enriched in lymphocytes and alveolar fibroblasts. ConclusionThese findings delineate distinct fibrotic epithelial niches in IPF and support a model in which epithelial loss induces aberrant basaloid differentiation and fibroblast activation, with subsequent airway traction and epithelial detachment generating a secondary niche enriched in basal-derived KRT5low/KRT17 cells and SPP1 macrophages.

molecular biology↗

Cell Targeting and Adjuvant Activity of Dietary Titanium Dioxide

Food-grade titanium dioxide (fgTiO2) is a bio-persistent particle under intense regulatory scrutiny. Paradoxically, meaningful in vivo cellular accumulation has never been demonstrated: the only known cell reservoirs for fgTiO2 are graveyard intestinal pigment cells which are metabolically and immunologically quiescent. Here we identify major new immunocompetent cell targets of fgTiO2 in humans, most notably in the subepithelial dome region of intestinal Peyers patches. Using multimodal microscopy techniques with single-particle detection and per-cell / vesicle image analysis we achieved correlative dosimetry, quantitatively recapitulating human cellular exposures in the terminal ileum of mice fed a fgTiO2-containing diet. Epithelial microfold cells selectively funneled fgTiO2 into LysoMac and LysoDC cells with ensuing accumulation. Notwithstanding, proximity extension analyses for 92 protein targets revealed no measureable perturbation of cell signalling pathways. When chased with oral {Delta}aroA-Salmonella, pro-inflammatory signalling was confirmed, but no augmentation by fgTiO2 was revealed despite marked same-cell loading. Interestingly, Salmonella caused the fgTiO2-recipient cells to migrate basolaterally in the patch and, sporadically, to the lamina propria, thereby fully recreating the intestinal tissue distribution of fgTiO2 in humans. Immunocompetent cells that accumulate fgTiO2 in vivo are now identified and we demonstrate a mouse model that finally enables human-relevant risk assessments of ingested, bio-persistent (nano)particles.

pharmacology and toxicology↗