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February 26, 2026Journal of Translational Medicine4 citationsOpen Access

Fecal microbiota transplantation for advanced non-small cell lung cancer with secondary PD-1 resistance efficacy prognostic factors and microbiome diversity analysis

HHHongxiang HuangSPSuJuan PengYLYi Liu

Key Points

  • This research aims to evaluate the efficacy of fecal microbiota transplantation in patients with advanced non-small cell lung cancer who have developed resistance to PD-1 inhibitors.
  • Conducted a prospective, single-arm phase II study
  • Enrolled 27 patients with stage IIIB–IV NSCLC resistant to PD-1 therapy
  • Administered oral capsule-based fecal microbiota transplantation with PD-1 inhibitor and chemotherapy
  • Assessed efficacy with objective response rate, progression-free survival, and overall survival
  • Analyzed gut microbiota composition using 16 S rRNA sequencing and immune subsets by flow cytometry
  • Achieved an objective response rate of 29.6% with 8 patients showing partial response
  • Median progression-free survival was 6.8 months and overall survival was 11.1 months
  • Responders exhibited increased gut microbial diversity and distinct microbial enrichment
  • Identified proton pump inhibitor and corticosteroid use as independent predictors of shorter progression-free survival
  • Treatment-related adverse events were mostly mild to moderate with no serious infections associated with FMT

Abstract

Acquired resistance to programmed cell death protein 1 (PD-1) inhibitors represents a major therapeutic challenge in advanced non-small cell lung cancer (NSCLC). Increasing evidence suggests that gut microbiota dysbiosis contributes to immunotherapy resistance. Fecal microbiota transplantation (FMT) has emerged as a potential strategy to restore antitumor immunity, yet its role in PD-1–resistant NSCLC remains insufficiently explored. This prospective, single-arm phase II study enrolled patients with stage IIIB–IV NSCLC who developed secondary resistance after prior PD-1–based therapy. Patients received oral capsule-based FMT combined with PD-1 inhibitor rechallenge and chemotherapy. Treatment efficacy was assessed using objective response rate (ORR), progression-free survival (PFS), and overall survival (OS). Gut microbiota composition was analyzed by 16 S rRNA sequencing, and immune cell subsets were evaluated by flow cytometry. Cox regression analysis was performed to identify prognostic factors. A total of 27 patients were enrolled, of whom 8 achieved partial response, yielding an ORR of 29.6% and a disease control rate of 63.0%. Median PFS and OS were 6.8 months (95% CI: 2.1–11.6) and 11.1 months (95% CI: 6.4–15.9), respectively. Post-FMT, responders exhibited significantly increased gut microbial diversity and distinct microbial enrichment compared with non-responders. Enhanced infiltration of CD8⁺ T-cell subsets and reduced regulatory T-cell proportions were observed in responders. Multivariable analysis identified concomitant proton pump inhibitor use (HR: 12.67, P < 0.001) and corticosteroid exposure during FMT (HR: 4.98, P = 0.013) as independent predictors of shorter PFS. Treatment-related adverse events were common but mostly mild to moderate, with no FMT-related serious infections observed. FMT combined with PD-1 inhibitor rechallenge and chemotherapy demonstrated encouraging antitumor activity and acceptable safety in advanced NSCLC patients with secondary PD-1 resistance. Gut microbiota modulation may enhance immunotherapy responsiveness, while concomitant use of PPIs and corticosteroids may adversely affect outcomes. These findings support further investigation of microbiome-based strategies in overcoming immunotherapy resistance. National Health Security Information Platform and Medical Research Information System of China, MR3622010054.

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Cite This Study

Huang et al. (2026) studied this question.

synapsesocial.com/papers/699fe40c95ddcd3a253e8306https://doi.org/10.1186/s12967-026-07885-w
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