BACKGROUND: We previously identified three clinically relevant immune (i.e., low-TIL, high-TIL, and high-ISG) subtypes of luminal breast cancer using RNA sequencing in a cohort of women from Hong Kong. Here, we evaluated whether standard, in situ immunohistochemistry (IHC), a more clinically accessible approach, could capture similar immune heterogeneity across intrinsic (PAM50) subtypes. METHODS: In 148 patients with invasive breast cancer, we performed dual IHC staining for eight markers (CD3, CD8, CD20, FOXP3, CD68, CD163, PDL1, IDO1) with pan-cytokeratin (PanCK), and quantified immune-positive cells in stromal regions using digital image analysis. RESULTS: IHC marker expression strongly correlated with gene expression-based immune and intrinsic subtypes. Compared with luminal tumors classified as low-TIL, high-TIL tumors showed higher levels of CD3, CD8, CD20, PDL1, and IDO1. Similarly, high-ISG tumors expressed higher CD3, CD8, CD20, PDL1, and IDO1 than low-TILs, but were distinguished from high-TILs by elevated CD163. Immune marker expression was generally higher in HER2-enriched and basal-like tumors than in luminal A and B, though substantial variability existed within each subtype. Luminal B tumors expressed higher levels of CD3, CD8, CD20, and CD163 compared with luminal A tumors. Notably, immune infiltration was more strongly aligned with aggressive tumor features such as high grade, risk of recurrence scores, and TP53 mutations than with ER/PR expression. CONCLUSION: These findings confirm that subsets of luminal tumors harbor inflamed or macrophage-driven immune microenvironments. IMPACT: Parsimonious IHC panels can perform immune classification, supporting their potential utility in refining subtype stratification and informing clinical decision-making, particularly in resource-limited settings.
Abubakar et al. (Fri,) studied this question.
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