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February 28, 2026Nature Communications3 citationsOpen Access

Tumor-associated CD19+ macrophages induce immunosuppressive microenvironment in hepatocellular carcinoma

JWJunli WangWCWanyue CaoJHJinyan Huang

Key Points

  • The study aims to explore the role of CD19+ macrophages in creating an immunosuppressive environment in hepatocellular carcinoma and evaluate targeting strategies.
  • Characterization of CD19+ macrophage subpopulation in hepatocellular carcinoma samples
  • Assessment of macrophage functions including PD-L1 and CD73 levels
  • Inhibition of HCC growth using anti-CD19 CAR-T cells
  • Evaluation of mitochondrial oxidation and phagocytosis in CD19+ macrophages
  • Testing the effects of targeting CD73 and mitochondrial oxidation on immune checkpoint blockade efficacy.
  • Identification of a CD19+ macrophage subset enriched in hepatocellular carcinoma
  • Increased PD-L1 and CD73 levels along with impairments in phagocytosis
  • CD19+ macrophage targeting with CAR-T cells reduced HCC tumor growth
  • Inhibition of CD73 or mitochondrial oxidation improved outcomes with immune checkpoint therapy

Abstract

Tumor-associated macrophages are a key component that contributes to the immunosuppressive microenvironment in human cancers. However, therapeutic targeting of macrophages has been a challenge in clinic due to the limited understanding of their heterogeneous subpopulations and distinct functions. Here, we identify a clinically relevant CD19+ subpopulation of macrophages that is enriched in many types of cancer, particularly in hepatocellular carcinoma (HCC). The CD19+ macrophages exhibit increased levels of programmed cell death 1 ligand 1 (PD-L1) and CD73, enhanced mitochondrial oxidation, and compromised phagocytosis, indicating their immunosuppressive functions. Targeting CD19+ macrophages with anti-CD19 chimeric antigen receptor T (CAR-T) cells inhibited HCC tumor growth. We identify Paired Box 5 (PAX5) as a primary driver of up-regulated mitochondrial biogenesis in CD19+ macrophages, which depletes cytoplasmic Ca2+, leading to lysosomal deficiency and consequent accumulation of CD73 and PD-L1. Inhibiting CD73 or mitochondrial oxidation enhanced the efficacy of immune checkpoint blockade therapy in treating HCC, suggesting great promise for CD19+ macrophage-targeting therapeutics. Tumor-associated macrophages shape cancer’s immunosuppressive microenvironment, but their heterogeneity hampers therapeutic targeting. This study identifies a CD19+ macrophage subset in hepatocellular carcinoma and evaluates strategies to target them for improved immunotherapy.

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Cite This Study

Wang et al. (2026) studied this question.

synapsesocial.com/papers/69a287e20a974eb0d3c03b18https://doi.org/10.1038/s41467-026-69638-z
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