Submicrometre sampling of living cells by macrophages

A Amy C. Fan R Rukman R. Thota N Nina Serwas V Vivasvan S. Vykunta K Kyle Marchuk M Megan K. Ruhland L Lauren Liu G Grace Johnson A Austin Edwards M Matthew F. Krummel

Abstract

Abstract An effective immune system must sample and develop healthy self-identity to prevent autoimmunity and to discern pathogenic insults 1–3 . Self-proteins are presented to T cells in the thymus during immune cell development 2,3 and must be presented throughout the body to maintain regulatory T cell populations 4–6 and to provide tonic signals to sustain conventional T cells over time 7–9 . Observations of continuous apoptosis in some organs together with the ingestion of that material by myeloid populations has led to a conventional understanding of ongoing cell death as a major source of self-antigens 10 . Here we used a series of companion imaging and vesicular labelling technologies to reveal an alternative process undertaken by macrophages that results in non-destructive, direct sampling of living cells. This process requires cell–cell contact, does not require caspase activation and occurs via trogocytosis-like stretching of the target cell into the macrophage, which leads to the generation of submicrometre-sized vesicles that contain cytoplasm. Using a high-dimensional flow-based method for labelling vesicles, we demonstrate that live-sampled material is distinctly processed and is poorly subjected to fusion with lysosomes. The material also produces differential effects on the presentation of antigen to CD4 T cells compared with CD8 T cells. Disruption of this trafficking by redirecting antigen to the lysosome significantly reduced the associated macrophage-mediated priming of CD8 T cells. These results demonstrate an important and substantial sampling of living cells by the immune system, with clear consequences for maintaining the border of immunity.

Article Details

Journal Nature
Volume / Issue Vol. 654, Issue 8118
Published June 11, 2026
Pages 495-503
ISSN 0028-0836
Publisher Nature Portfolio

Journal Info

Nature

Nature Portfolio

ISSN: 0028-0836 Health Sciences

Authors (10)

A

Amy C. Fan

R

Rukman R. Thota

N

Nina Serwas

V

Vivasvan S. Vykunta

K

Kyle Marchuk

M

Megan K. Ruhland

L

Lauren Liu

G

Grace Johnson

A

Austin Edwards

M

Matthew F. Krummel