Immunocompetent cell targeting by food-additive titanium dioxide
Abstract
Abstract Food-grade titanium dioxide (fgTiO 2 ) is a bio-persistent particle under intense regulatory scrutiny. Yet paradoxically, the only known cell reservoirs for fgTiO 2 are graveyard intestinal pigment cells which are metabolically and immunologically quiescent. Here we identify immunocompetent cell targets of fgTiO 2 in humans, most notably in the subepithelial dome region of intestinal Peyer’s patches. Using multimodal microscopies with single-particle detection and per-cell / vesicle image analysis we achieve correlative dosimetry, quantitatively recapitulating human cellular exposures in the ileum of mice fed a fgTiO 2 -containing diet. Epithelial microfold cells selectively funnel fgTiO 2 into LysoMac and LysoDC cells with ensuing accumulation. Notwithstanding, proximity extension analyses for 92 protein targets reveal no measureable perturbation of cell signalling pathways. When chased with oral ΔaroA - Salmonella , pro-inflammatory signalling is confirmed, but no augmentation by fgTiO 2 is revealed despite marked same-cell loading. Interestingly, Salmonella causes the fgTiO 2 -recipient cells to migrate within the patch and, sporadically, to be identified in the lamina propria, thereby fully recreating the intestinal tissue distribution of fgTiO 2 in humans. Immunocompetent cells that accumulate fgTiO 2 in vivo are now identified and we demonstrate a mouse model that finally enables human-relevant risk assessments of ingested, bio-persistent (nano)particles.
Article Details
Authors (20)
John W. Wills
Alicja Dabrowska
Jack Robertson
Michelle Miniter
Sebastian Riedle
Huw D. Summers
Rachel E. Hewitt
Adeeba Fathima
Alessandra Barreto da Silva
Carlos A. P. Bastos
Stuart Micklethwaite
Åsa V. Keita
Johan D. Söderholm
Nicole C. Roy
Don Otter
Ravin Jugdaohsingh
Pietro Mastroeni
Andy P. Brown
Paul Rees
Jonathan J. Powell