{"database":"GEO","file_versions":[{"headers":{"Content-Type":["application/json"]},"body":{"files":{"Other":["ftp://ftp.ncbi.nlm.nih.gov/geo/series/GSE335nnn/GSE335686/"]},"type":"primary"},"statusCodeValue":200,"statusCode":"OK"}],"scores":null,"additional":{"omics_type":["Transcriptomics"],"species":["Mus musculus"],"gds_type":["Expression profiling by high throughput sequencing"],"full_dataset_link":["https://www.ncbi.nlm.nih.gov/geo/query/acc.cgi?acc=GSE335686"],"repository":["GEO"],"entry_type":["GSE"],"additional_accession":[]},"is_claimable":false,"name":"Chimeric 4/9ICR Reprograms Immunosuppressive IL-4 Signals to Enhance B7-H3-Targeted CAR-T Cell Efficacy Against Triple-Negative Breast Cancer","description":"Although chimeric antigen receptor (CAR)-T cell therapy has achieved remarkable success in hematologic malignancies, its efficacy against solid tumors remains limited due to the immunosuppressive tumor microenvironment (TME). In triple-negative breast cancer (TNBC), interleukin-4 (IL-4) is markedly enriched and serves as a pivotal regulator driving CAR-T cell exhaustion and resistance to immune checkpoint inhibition. To overcome IL-4-mediated immunosuppression, we engineered an inverted cytokine receptor (4/9ICR), in which the extracellular domain of IL-4 receptor α (IL-4Rα) was fused to the transmembrane and intracellular domains of IL-9Rα. When co-expressed with a B7-H3-targeted CAR, 4/9ICR enables T cells to sequester suppressive IL-4 and convert IL-4 signals into IL-9-like activation, leading to robust phosphorylation of STAT1, STAT3, STAT4, and STAT5. In vitro, both murine and human CAR-4/9ICR-T cells exposed to IL-4 exhibited increased effector cytokine production and enhanced expression of stemness markers. Importantly, CAR-4/9ICR-T cells exerted enhanced tumor control, maintained cytotoxicity, and reduced exhaustion compared with conventional CAR-T cells in vivo. Moreover, 4/9ICR reprogrammed the TME by repolarizing tumor-associated macrophages from an immunosuppressive M2-like to a proinflammatory M1-like phenotype. These findings demonstrate that IL-4/IL-9 signal reprogramming may serve as a clinically applicable strategy to enhance CAR-T efficacy in TNBC and other IL-4-enriched solid tumors.","dates":{"publication":"2026/09/08"},"accession":"GSE335686","cross_references":{"GSM":["GSM9817613","GSM9817612","GSM9817611","GSM9817610","GSM9817609","GSM9817608"],"GPL":["13112"],"GSE":["335686"],"taxon":["Mus musculus"]}}