Clinical translation remains limited by dependence on retrospective transcriptomic datasets, insufficient mechanistic validation, lack of standardized assays, and scarce prospective clinical evidence, but pyroptosis-associated lncRNAs represent a promising link between tumor progression and immune regulation, with considerable potential as prognostic biomarkers and therapeutic targets in breast cancer.
Abstract
Breast cancer progression and therapeutic response are profoundly influenced by tumor immune interactions, yet the molecular regulators linking cell death pathways with immune modulation remain incompletely understood. Pyroptosis, a gasdermin-mediated inflammatory form of programmed cell death, has emerged as a key determinant of tumor immunity, while long non-coding RNAs are increasingly recognized as critical upstream regulators of cancer signaling. Recent transcriptomic analyses have identified numerous pyroptosis-associated lncRNAs and generated prognostic signatures that stratify patients into distinct risk groups with significantly different survival outcomes. These signatures are closely associated with the tumor immune microenvironment: low-risk tumors exhibit increased infiltration of CD8+ T cells, NK cells, and B cells, together with elevated immune checkpoint expression, whereas high-risk tumors display immunosuppressive features, including M2 macrophage enrichment and higher tumor mutation burden. Mechanistic studies demonstrate that lncRNAs regulate pyroptosis through inflammasome activation, gasdermin-mediated signaling, and epigenetic modulation, thereby influencing tumor growth, metastasis, and therapeutic resistance. Despite these advances, clinical translation remains limited by dependence on retrospective transcriptomic datasets, insufficient mechanistic validation, lack of standardized assays, and scarce prospective clinical evidence. pyroptosis-associated lncRNAs represent a promising link between tumor progression and immune regulation, with considerable potential as prognostic biomarkers and therapeutic targets in breast cancer.
Triple-negative breast cancer (TNBC) remains an aggressive breast cancer subtype marked by molecular heterogeneity, immune evasion, limited actionable targets, and variable responses to immune-based therapy. Pyroptosis, a gasdermin-mediated inflammatory form of regulated cell death, may link tumor-cell injury to remode...
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Hepatocellular carcinoma (HCC) develops within a chronically inflamed and immunologically dysregulated hepatic microenvironment that contributes to therapeutic resistance and disease progression. Gasdermin-mediated pyroptosis has emerged as a context-dependent inflammatory cell-death program capable of reshaping antitu...
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Investigation of whether miR-155-5p and miR-3535 represent regulators capable of driving coordinated functional reprogramming of both, tumor cells and macrophages found they modulate tumor-intrinsic immune checkpoint expression and functional macrophage polarization in a coordinated way.
Hepatocellular carcinoma (HCC) remains a leading cause of cancer-related mortality worldwide. The tumor microenvironment (TME) is a highly immunosuppressive niche shaped by aberrant angiogenesis, chronic inflammation, and extracellular matrix remodeling, which facilitates immune evasion and promotes HCC proliferation,...
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