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Characteristics of patients with non-small cell lung cancer and either limited or extensive synchronous metastatic spread in Germany—a population-based cancer registry cohort study

Sophia Bertram, Antje Schliemann, Alexander Katalinic, Soo Zin Kim-Wanner, Ron Pritzkuleit, Dorothee Twardella, Annika Waldmann*

*Corresponding author for this work

Abstract

Background: Oligometastatic disease, i.e., disease with limited metastatic spread (LMS), is increasingly recognised as a distinct clinical entity as it differs from disease with extensive metastatic spread (polymetastatic disease) in terms of treatment and prognosis. This retrospective observational study aimed to characterise a population-based cohort of non-small-cell lung cancer (NSCLC) patients with synchronous metastatic disease, stratified by the extent of metastatic spread. Methods: NSCLC patients [≥18 years, diagnosed 2016–2020, ICD-10 C34, Union for International Cancer Control (UICC) stage IV at primary diagnosis] were identified from three German population-based cancer registries covering approximately 27% of the national population. The extent of metastatic disease was classified according to the 8th edition of the tumour-node-metastasis (TNM) system and further subclassified by the number of organ systems involved. We differentiated between patients with TNM-M stage M1a (intra-thoracic LMS), M1b [one single extra-thoracic metastasis or extra-thoracic LMS (ET-LMS)], M1c and ≤3 [limited multi-organ involvement (LMOI)] and >3 organ systems involved or with generalised metastatic disease [extensive multi-organ involvement (EMOI)]. The intent of the statistical analysis was mainly descriptive. Results: The cohort included 8,033 NSCLC patients with distant metastasis at diagnosis of the primary tumour (1,767 with intra-thoracic LMS, 1,314 with ET-LMS, 4,196 with LMOI and 756 with EMOI). Patients with EMOI were younger (median: 64 vs. 66–70 years), more often female (45.0% vs. 40.6–41.4%), had a higher proportion of adenocarcinomas (83.7% vs. 72.2–78.7%) and showed more frequent N3 lymph node involvement (37.8% vs. 22.9–30.4%) than patients with LMS (subgroups: intra-thoracic LMS, ET-LMS or LMOI). Patients in the ET-LMS subgroup most often presented with one brain, osseous or adrenal metastasis (in descending order), patients in the LMOI subgroup most often with osseous, brain and/or pulmonal metastases, while patients in the EMOI subgroup presented most often with osseous, hepatic and/or pulmonal metastases. Patients were followed-up for a median time of 7 months (interquartile range, 3–16 months), during which every fourth patient with initially LMS experienced a new metastasis with mainly limited spread, usually in another organ than at primary diagnosis. Brain and osseous metastases were most frequently observed during follow-up. Conclusions: We were able to identify patients with LMS in a population-based real-world dataset. This large data source forms the basis of a study series, in which subsequent analyses will assess survival prospects and optimal treatment strategies for this therapeutically relevant patient group.

Original languageEnglish
JournalTranslational Lung Cancer Research
Volume14
Issue number10
Pages (from-to)4422-4435
Number of pages14
ISSN2218-6751
DOIs
Publication statusPublished - 31.10.2025

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

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