Baseline Brain Metastases as a Prognostic Factor in Extensive-Stage Small Cell Lung Cancer Treated with First-Line Chemo-Immunotherapy: A Systematic Review and Meta-Analysis
Recommended Citation
Tareen H, Dad A, Arham M, Tahir HB, Kumar P, Jamil M, Ahmed H, Khalid M, Marsool MD, Sami MM, Ashraf MF, Rehman Daim SU, Ahmad RU, Habib H, Siddiqi AR, Iftikhar A. Baseline Brain Metastases as a Prognostic Factor in Extensive-Stage Small Cell Lung Cancer Treated with First-Line Chemo-Immunotherapy: A Systematic Review and Meta-Analysis. J Clin Oncol 2026; 44(16_Suppl):e20139.
Document Type
Conference Proceeding
Publication Date
5-27-2026
Publication Title
J Clin Oncol
Keywords
biological marker, etoposide, programmed death 1 ligand 1, adult, brain metastasis, chemoimmunotherapy, clinical trial, conference abstract, diagnosis, drug therapy, first-line treatment, follow up, high risk population, human, meta analysis, overall survival, Preferred Reporting Items for Systematic Reviews and Meta-Analyses, progression free survival, randomized controlled trial, small cell lung cancer, systematic review
Abstract
Background: Extensive-stage small cell lung cancer (ES-SCLC) frequently presents with brain metastases, affecting approximately 20% of the patients at diagnosis. The prognostic impact of baseline brain metastases on survival outcomes in patients treated with contemporary chemo-immunotherapy remains unclear, creating uncertainty in first-line treatment selection for this high-risk population. We conducted a systematic review and meta-analysis to evaluate the impact of baseline brain metastases on treatment outcomes in ES-SCLC. Methods: This PRISMA-compliant systematic review and meta-analysis was prospectively registered in PROSPERO. PubMed, Embase, Cochrane CENTRAL, and ClinicalTrials.gov were systematically searched from database inception through January 2026 to identify randomized controlled trials evaluating PD-1/PD-L1-based chemo-immunotherapy versus platinum-etoposide chemotherapy in adults with ES-SCLC. Two reviewers independently screened studies and extracted data, with discrepancies resolved by consensus. Hazard ratios (HRs) for overall survival (OS) and progression-free survival (PFS) were pooled separately for patients with baseline brain metastases (BM+) and without brain metastases (BM−) using random-effects models with Hartung–Knapp adjustment. Analyses were performed using R. Prespecified subgroup analyses were conducted based on follow-up duration and immunotherapy regimen. Results: Twelve randomized controlled trials were included. Among patients with baseline brain metastases (BM+), pooled OS from seven studies did not show a significant survival benefit (HR 0.84, 95% CI 0.66–1.08, I² = 0.0%, P = 0.145), nor did pooled PFS from five studies (HR 1.03, 95% CI 0.60–1.79, I² = 0.0%). Subgroup analyses revealed no significant heterogeneity. In contrast, among patients without baseline brain metastases (BM−), pooled OS from nine studies demonstrated a significant survival benefit (HR 0.72, 95% CI 0.69–0.76, I² = 0.0%, P < 0.001), with corresponding improvement in PFS (HR 0.70, 95% CI 0.60–0.82, I² = 0.0%). These findings indicate a differential treatment effect according to baseline brain metastasis status. Conclusions: First-line chemo-immunotherapy does not apprear to confer a significant survival benefit in ES-SCLC patients with baseline brain metastases, reflecting a differential treatment effect by brain metastasis status. These findings suggest that baseline brain metastases should be considered in treatment selection and future clinical trial design and highlight the need for optimized systemic strategies for this high-risk population.
Volume
44
Issue
16_Suppl
First Page
e20139
