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April 5, 2026Cancer Research0 citations

Abstract 6082: IFNα polarizes granulocytic MDSCs from neutrophils by inducing protein translation

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JMJuanita L. MerchantUniversity of ArizonaLDLin DingUniversity of Arizona

Key Points

  • Explore how IFNα influences neutrophils to become immunosuppressive myeloid-derived suppressor cells (MDSCs) through enhanced protein translation.
  • Performed single-cell RNA sequencing (scRNA-Seq) on gastric biopsies from diverse patient groups.
  • Analyzed in vitro effects of IFNα on protein translation in granulocytes from mouse and human blood.
  • Quantified polarized Gr-MDSCs via flow cytometry and examined proliferation using EdU assays.
  • Conducted in vivo analysis using an OPP treatment.
  • Identified activation of unfolded protein response mediators in gastric tissues.
  • Identified significant increase of IFNα-polarized Gr-MDSCs in gastric adenocarcinoma compared to normal tissues.
  • 28% of polarized neutrophils expressed characteristics of MDSCs, with 85% showing increased protein synthesis.
  • ScRNA-Seq revealed expression of unfolded protein response mediators, indicating metabolic reprogramming.

Abstract

Abstract The extensive heterogeneity in the tumor immune microenvironment is a problem plaguing immune-based treatment failures for solid tumors because it prevents defining the specific vulnerabilities of the various cells to develop treatments with greater precision. Myeloid-derived suppressor cells (MDSCs) are a heterogenous collection of immunosuppressive monocytes and granulocytes (neutrophils) whose link to poor cancer survival is not well understood. Most MDSCs exhibit features of immature granulocytes (Gr-MDSCs) and exert their T cell suppression by secreting reactive oxygen and nitrogen species (RONS). Gr-MDSCs can survive for days by recruiting mechanisms to protect protein translation despite generation of RONS. One MDSC subtype of interest is defined by their polarization in response to type 1 interferon (IFNα) that we previously identified in chronic Helicobacter-infected mice with gastric metaplasia, suggesting that a Helicobacter-infected stomach polarizes neutrophils to acquire an immunosuppressive phenotype. We hypothesize that IFNα initiates neutrophil reprogramming by increasing protein synthesis required to alter their metabolic activities as they acquire the Gr-MDSC phenotype. We performed scRNA-Seq on biopsies from 5 groups of patients referred for endoscopy and showed no gastric abnormalities, were H. pylori+ (Hp), had intestinal metaplasia (IM) or gastric adenocarcinoma (GAC) and identified that the IFN-polarized MDSC population initially present in IM increased substantially in GACs but was not detected in normal and Hp-infected patients, confirming the polarization of IFN-polarized Gr-MDSCs once IM appears. We showed that the IFN-polarized Gr-MDSCs re-programmed from neutrophils in vitro and required induction of protein translation. To analyze translation, we treated primary cultures of granulocytes from mouse bone marrow or human PBMCs with IFNα and quantified protein translation by flow cytometry after incubating the cultures with 20µM O-propargyl-puromycin (OPP) and proliferation with EdU. In vivo analysis was performed by administering OPP to mice before euthanization. In the in vitro neutrophil cultures, about 28% of the polarized neutrophils were CD11b+Gr-1+ MDSCs, and 85% of these Gr-MDSCs induced their protein synthesis coincident with increased proliferation. scRNA-Seq analysis of both mouse and human gastric tissues demonstrated induction of mediators of the unfolded protein response (UPR), e.g., CHOP. In summary, polarization of Gr-MDSCs by type 1 IFNs from neutrophils requires induction of protein translation, revealing possible metabolic pathways that may be targeted to reprogram the immunosuppressive tumor microenvironment. Citation Format: Juanita L. Merchant, Lin Ding. IFNα polarizes granulocytic MDSCs from neutrophils by inducing protein translation abstract. In: Proceedings of the American Association for Cancer Research Annual Meeting 2026; Part 1 (Regular Abstracts); 2026 Apr 17-22; San Diego, CA. Philadelphia (PA): AACR; Cancer Res 2026;86(7 Suppl):Abstract nr 6082.

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Cite This Study

Merchant et al. (2026) studied this question.

synapsesocial.com/papers/69d1fcc0a79560c99a0a2633https://doi.org/10.1158/1538-7445.am2026-6082
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