Genomic and transcriptomic landscape of spread through air spaces in stage 1 lung adenocarcinoma

INTRODUCTION: Spread through air spaces (STAS) is an adverse histologic feature in early-stage lung adenocarcinoma (LUAD) incorporated into the ninth edition TNM staging. Despite its clinical significance, the molecular features underlying STAS in stage 1 LUAD remain incompletely characterised. METHODS: Patients with stage 1 LUAD and known STAS status were identified. Whole exome and RNA sequencing were performed on tumour samples with matched normal controls. Disease-free survival (DFS) was analysed using the Kaplan-Meier method and Cox regression. RESULTS: Among 378 patients, 54.2% had STAS+ tumours, with similar incidence between EGFR-mutant and EGFR-wildtype LUAD. STAS+ tumours were significantly associated with stage 1B disease, lymphovascular invasion, higher histological grade, micropapillary or solid predominant adenocarcinoma subtype and PD-L1 tumour proportion score ≥1%. STAS+ remained independently associated with inferior DFS after multivariable adjustment (hazard ratio 2.32, 95% CI 1.16-4.63; p = 0.017). At the molecular level, STAS+ tumours were enriched for TP53 co-mutations, whole genome doubling, non-TRU transcriptomic subtypes and upregulation of cell cycle-related pathways, with directionally consistent findings across EGFR-mutant and EGFR-wildtype tumours. CONCLUSIONS: STAS+ in stage 1 LUAD is associated with a distinct molecular phenotype characterised by genomic instability and cell cycle dysregulation, consistent with a more aggressive biological phenotype with implications for risk stratification and adjuvant therapy selection.

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Publication Details

Journal
British Journal of Cancer
Published
2026-09-19
DOI
https://doi.org/10.1038/s41416-026-03622-8
Primary Topic
Lung Cancer Treatments and Mutations
Type
article
Field-Weighted Citation Impact
0.00

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article

Genomic and transcriptomic landscape of spread through air spaces in stage 1 lung adenocarcinoma

Stephanie P.L. Saw, Wei Chong Tan, Wan Ling Tan, Ngak Leng Sim et al.
British Journal of Cancer
Lung Cancer Treatments and Mutations
article

Genomic and transcriptomic landscape of spread through air spaces in stage 1 lung adenocarcinoma

Stephanie P.L. Saw, Wei Chong Tan, Wan Ling Tan, Ngak Leng Sim, Wan‐Teck Lim, Ravindran Kanesvaran, Quan Sing Ng, Daniel S.W. Tan, Boon‐Hean Ong, Amanda O. L. Seet, A. Skanderup, Mengyuan Pang, Clare Patteri, Tony K.H. Lim, Mei-Kim Ang, Angela Takano, Jia Chi Yeo, Amit Jain, Gillianne G. Y. Lai, Aaron C. Tan
article en

Abstract

INTRODUCTION: Spread through air spaces (STAS) is an adverse histologic feature in early-stage lung adenocarcinoma (LUAD) incorporated into the ninth edition TNM staging. Despite its clinical significance, the molecular features underlying STAS in stage 1 LUAD remain incompletely characterised. METHODS: Patients with stage 1 LUAD and known STAS status were identified. Whole exome and RNA sequencing were performed on tumour samples with matched normal controls. Disease-free survival (DFS) was analysed using the Kaplan-Meier method and Cox regression. RESULTS: Among 378 patients, 54.2% had STAS+ tumours, with similar incidence between EGFR-mutant and EGFR-wildtype LUAD. STAS+ tumours were significantly associated with stage 1B disease, lymphovascular invasion, higher histological grade, micropapillary or solid predominant adenocarcinoma subtype and PD-L1 tumour proportion score ≥1%. STAS+ remained independently associated with inferior DFS after multivariable adjustment (hazard ratio 2.32, 95% CI 1.16-4.63; p = 0.017). At the molecular level, STAS+ tumours were enriched for TP53 co-mutations, whole genome doubling, non-TRU transcriptomic subtypes and upregulation of cell cycle-related pathways, with directionally consistent findings across EGFR-mutant and EGFR-wildtype tumours. CONCLUSIONS: STAS+ in stage 1 LUAD is associated with a distinct molecular phenotype characterised by genomic instability and cell cycle dysregulation, consistent with a more aggressive biological phenotype with implications for risk stratification and adjuvant therapy selection.

British Journal of Cancer
Agency for Science, Technology and Research (SG), SingHealth (SG), Singapore General Hospital (SG), National Cancer Centre Singapore (SG), National Heart Centre Singapore (SG), Genome Institute of Singapore (SG)
National Medical Research Council
Life in Land
Openalex Percentile: Top 11%
Lung Cancer Treatments and Mutations
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