Viergen-signatuur voorspelt overleving en immunomicro-omgeving bij rectumcarcinoom
Onderzoekers ontwikkelden en valideerden een viergen-signatuur (CUTA, IZUMO2, PALB2 en PSCA) op basis van publieke transcriptomische datasets om de overleving en de immunomicro-omgeving bij rectumcarcinoom te voorspellen.
De signatuur stratificeerde patiënten effectief in hoog- en laagriskogroepen met significante verschillen in overleving (TCGA: P<0,001; validatiecohort: P=0,002) en bleek een onafhankelijke prognostische factor (HR=2,532).
De laagriskogroep vertoonde een gunstiger immuunprofiel en lagere activiteit van epitheliaal-mesenchymale overgangspaden. Hoewel de bevindingen inzicht bieden in de moleculaire mechanismen van bestralingsresistentie, vereist directe klinische toepassing nog prospectieve validatie.
Abstract (original)
BACKGROUND: Radiotherapy resistance remains a significant challenge in the management of locally advanced rectal cancer (LARC). To date, no universally applicable and reliable prognostic marker has been established for clinical practice. Thus, reliable biomarkers need to be identified and the molecular mechanisms underlying radiotherapy resistance need to be investigated to improve patient prognosis. The study aimed to identify a radiotherapy-related signature for evaluating radiotherapy response and predicting the overall survival (OS) of patients with rectal cancer. METHODS: Multiple independent sources of transcriptomic datasets from The Cancer Genome Atlas (TCGA) (training cohort, n=154) and the Gene Expression Omnibus (GEO), including GSE35452 (containing radiotherapy response and non-response cohorts) and GSE87211 (validation cohort), were systematically integrated. A prognostic signature was developed by identifying radiotherapy-related genes through differential expression analysis and weighted gene correlation network analysis (WGCNA), followed by least absolute shrinkage and selection operator (LASSO) and multivariate Cox regression analyses. Functional enrichment, immune microenvironment characterization, and single-cell RNA sequencing (scRNA-seq) analyses were subsequently performed to explore the mechanisms underlying radiotherapy resistance. RESULTS: A four-gene prognostic signature comprising CUTA, IZUMO2, PALB2, and PSCA was established. The signature effectively stratified patients into high- and low-risk groups with distinct OS outcomes (TCGA: P<0.001; GSE87211: P=0.002) and served as an independent prognostic factor [multivariate Cox hazard ratio (HR) =2.532, P<0.001]. The high-risk group exhibited distinct immune environment characteristics and enrichment of epithelial-mesenchymal transition (EMT) pathways compared to the low-risk group. The scRNA-seq analysis revealed that PSCA expression was restricted to an epithelial subpopulation characterized by enhanced cell-cell communication and a more advanced pseudotime trajectory. CONCLUSIONS: This study developed and validated a four-gene signature for survival prediction in rectal cancer (RC). Functional enrichment and immune microenvironment characterization analyses indicated that the signature was associated with tumor heterogeneity and differential treatment responses in RC. The single-cell analysis indicated that PSCA may be a key gene in this process.
Dit artikel is een samenvatting van een publicatie in Translational cancer research. Voor het volledige artikel, alle details en referenties verwijzen wij u naar de oorspronkelijke bron.
Lees het volledige artikelDOI: 10.21037/tcr-2026-0554



