Abstract
Eosinophils recently emerged as mediators of anti-tumor immunity in immune checkpoint blockade (ICB) treated breast cancer patients. Yet, their role in the treatment-naïve breast tumor microenvironment (TME) remains elusive. Here, we show that the breast TME shapes eosinophils into a less active state characterized by loss of Ly6C. While bone marrow and circulating eosinophils are Ly6C⁺, this population progressively transitions into a Ly6C⁻ state marked by reduced cytotoxicity and interferon (IFN) responsiveness during tumor progression. Further investigation of Ly6C uncovered previously unappreciated granularity of eosinophil differentiation in vitro, recapitulating the Ly6C⁺ to Ly6C⁻ transition and associated functional loss observed in vivo. IFN stimulation partially restored the Ly6C⁺ phenotype ex vivo. Importantly, in ICB-treated tumors, Ly6C + eosinophils positively correlated with increasing levels of IFNs, suggesting an additional mechanism by which IFNs contribute to effective ICB responses. We propose Ly6C as a key marker of eosinophil differentiation and activation, with the TME shaping eosinophils into a less cytotoxic Ly6C⁻ state.
Full text
1,248 characters
· extracted from
oa-doi-fallback
· click to expand
Abstract
Eosinophils recently emerged as mediators of anti-tumor immunity in immune checkpoint blockade (ICB) treated breast cancer patients. Yet, their role in the treatment-naïve breast tumor microenvironment (TME) remains elusive. Here, we show that the breast TME shapes eosinophils into a less active state characterized by loss of Ly6C. While bone marrow and circulating eosinophils are Ly6C⁺, this population progressively transitions into a Ly6C⁻ state marked by reduced cytotoxicity and interferon (IFN) responsiveness during tumor progression. Further investigation of Ly6C uncovered previously unappreciated granularity of eosinophil differentiation in vitro, recapitulating the Ly6C⁺ to Ly6C⁻ transition and associated functional loss observed in vivo. IFN stimulation partially restored the Ly6C⁺ phenotype ex vivo. Importantly, in ICB-treated tumors, Ly6C+ eosinophils positively correlated with increasing levels of IFNs, suggesting an additional mechanism by which IFNs contribute to effective ICB responses. We propose Ly6C as a key marker of eosinophil differentiation and activation, with the TME shaping eosinophils into a less cytotoxic Ly6C⁻ state.
Competing Interest Statement
The authors have declared no competing interest.
Text is read by the "Ask this paper" AI Q&A widget below.
Extraction quality varies by source — PMC NXML preserves structure
cleanly, OA-HTML may include some navigation residue, and OA-PDF can
have broken hyphenation. The publisher copy
(via DOI)
is the canonical version.