Multi-omics characterization of P2RX4-associated immune microenvironment features and proof-of-concept observations of peritumoral radiomic phenotypes in TNBC

Abstract Background Triple-negative breast cancer (TNBC) is characterized by a highly heterogeneous and immunosuppressive tumor microenvironment (TME). While the ATP-gated receptor P2RX4 is associated with inflammation, its cell-specific expression patterns, associations with TME features, and potential imaging correlates in TNBC remain incompletely characterized. This study aimed to characterize the cell-specific expression of P2RX4, its association with the tumor immune microenvironment, and its potential non-invasive imaging correlates in TNBC. Methods We integrated single-cell RNA sequencing from GEO and bulk transcriptomics from TCGA-BRCA, with cross-cohort validation using the METABRIC cohort. Additionally, we incorporated dynamic contrast-enhanced MRI data from TCIA to provide exploratory macroscopic observations of the 3-mm peritumoral habitat. Results scRNA-seq analysis showed that P2RX4 expression was predominantly enriched in epithelial/tumor cells in the analyzed TNBC samples. Across transcriptomic analyses, P2RX4 expression was positively associated with CD163 expression and hypoxia-related transcriptional features, with modest correlation magnitudes. P2RX4 and P2RX7 showed different correlation patterns with selected microenvironment-related markers. In the analyzed TNBC cohort, P2RX4 expression was negatively correlated with VIM and positively correlated with CDH1; these associations do not establish an effect on EMT or stromal remodeling. Exploratory survival analyses showed an association between high P2RX4 expression and favorable overall survival in the Pan-BRCA cohort but not in the TNBC subgroup; this association was sensitive to the data-driven expression cutpoint. Imaging observations in four matched MRI cases were descriptive and hypothesis-generating and do not establish an imaging–molecular association or validate an imaging biomarker. Conclusions In the analyzed TNBC datasets, P2RX4 expression was associated with CD163 expression and hypoxia-related transcriptional features. These molecular findings, together with descriptive peritumoral MRI observations in four cases, generate hypotheses for future studies of P2RX4-associated microenvironmental features and potential imaging correlates.

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Journal
BMC Medical Imaging
Published
2026-09-29
DOI
https://doi.org/10.1186/s12880-026-02857-4
Primary Topic
Ferroptosis and cancer prognosis
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article
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article

Multi-omics characterization of P2RX4-associated immune microenvironment features and proof-of-concept observations of peritumoral radiomic phenotypes in TNBC

Ling Yan Zhang, Yue Zhang, Yong Qiu Zhu, Yi Fei Meng et al.
BMC Medical Imaging
Ferroptosis and cancer prognosis
article

Multi-omics characterization of P2RX4-associated immune microenvironment features and proof-of-concept observations of peritumoral radiomic phenotypes in TNBC

Ling Yan Zhang, Yue Zhang, Yong Qiu Zhu, Yi Fei Meng, Yu Qian Wang, Mi Fang Li
article en

Abstract

Abstract Background Triple-negative breast cancer (TNBC) is characterized by a highly heterogeneous and immunosuppressive tumor microenvironment (TME). While the ATP-gated receptor P2RX4 is associated with inflammation, its cell-specific expression patterns, associations with TME features, and potential imaging correlates in TNBC remain incompletely characterized. This study aimed to characterize the cell-specific expression of P2RX4, its association with the tumor immune microenvironment, and its potential non-invasive imaging correlates in TNBC. Methods We integrated single-cell RNA sequencing from GEO and bulk transcriptomics from TCGA-BRCA, with cross-cohort validation using the METABRIC cohort. Additionally, we incorporated dynamic contrast-enhanced MRI data from TCIA to provide exploratory macroscopic observations of the 3-mm peritumoral habitat. Results scRNA-seq analysis showed that P2RX4 expression was predominantly enriched in epithelial/tumor cells in the analyzed TNBC samples. Across transcriptomic analyses, P2RX4 expression was positively associated with CD163 expression and hypoxia-related transcriptional features, with modest correlation magnitudes. P2RX4 and P2RX7 showed different correlation patterns with selected microenvironment-related markers. In the analyzed TNBC cohort, P2RX4 expression was negatively correlated with VIM and positively correlated with CDH1; these associations do not establish an effect on EMT or stromal remodeling. Exploratory survival analyses showed an association between high P2RX4 expression and favorable overall survival in the Pan-BRCA cohort but not in the TNBC subgroup; this association was sensitive to the data-driven expression cutpoint. Imaging observations in four matched MRI cases were descriptive and hypothesis-generating and do not establish an imaging–molecular association or validate an imaging biomarker. Conclusions In the analyzed TNBC datasets, P2RX4 expression was associated with CD163 expression and hypoxia-related transcriptional features. These molecular findings, together with descriptive peritumoral MRI observations in four cases, generate hypotheses for future studies of P2RX4-associated microenvironmental features and potential imaging correlates.

BMC Medical Imaging
Longgang Central Hospital (CN)
Good health and well-being
Openalex Percentile: Top 12%
Ferroptosis and cancer prognosis
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