Immunocompetent cell targeting by food-additive titanium dioxide

J John W. Wills A Alicja Dabrowska J Jack Robertson M Michelle Miniter S Sebastian Riedle H Huw D. Summers R Rachel E. Hewitt A Adeeba Fathima A Alessandra Barreto da Silva C Carlos A. P. Bastos S Stuart Micklethwaite Åsa V. Keita J Johan D. Söderholm N Nicole C. Roy D Don Otter R Ravin Jugdaohsingh P Pietro Mastroeni A Andy P. Brown P Paul Rees J Jonathan J. Powell

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

Volume / Issue Vol. 16, Issue 1
Published July 04, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (20)

J

John W. Wills

A

Alicja Dabrowska

J

Jack Robertson

M

Michelle Miniter

S

Sebastian Riedle

H

Huw D. Summers

R

Rachel E. Hewitt

A

Adeeba Fathima

A

Alessandra Barreto da Silva

C

Carlos A. P. Bastos

S

Stuart Micklethwaite

Åsa V. Keita

J

Johan D. Söderholm

N

Nicole C. Roy

D

Don Otter

R

Ravin Jugdaohsingh

P

Pietro Mastroeni

A

Andy P. Brown

P

Paul Rees

J

Jonathan J. Powell