Association of metformin exposure with oncological outcomes in BCG-treated non-muscle-invasive bladder cancer: a three-arm retrospective cohort study

To evaluate the association between metformin exposure and oncological outcomes in bacillus Calmette–Guérin (BCG)-treated non-muscle-invasive bladder cancer (NMIBC) using a three-arm cohort design. Because all metformin-exposed patients were diabetic, the study was not designed to establish a direct antitumor effect of metformin. This retrospective cohort included 624 patients with NMIBC treated with transurethral resection and intravesical BCG. Patients were classified as diabetic metformin users ( n =147), diabetic non-metformin users ( n =89), or non-diabetic patients ( n =388). Diabetes was defined as a previously documented diagnosis of type 2 diabetes mellitus and/or current antidiabetic therapy; patients with type 1 diabetes were excluded. Metformin exposure was defined as use concurrent with the BCG treatment period. The BCG regimen comprised 6 weekly induction instillations with maintenance instillations in eligible patients; no concomitant intravesical chemotherapy was administered. Recurrence-free survival (RFS), progression-free survival (PFS), and overall survival (OS) were assessed using Kaplan–Meier analysis, log-rank tests, and multivariable Cox regression adjusted for clinicopathological and treatment-related covariates. A propensity-score matched sensitivity analysis comparing diabetic metformin users with diabetic non-metformin users was also performed. The median follow-up was 64.8 months. Diabetic patients were older and had higher body mass index and Charlson comorbidity index values than non-diabetic patients. Among diabetic patients with available data, median HbA1c was 7.85% (interquartile range 6.9–8.5) in metformin users and 7.45% (6.7–8.5) in non-metformin users; the median metformin dose was 1500 mg/day (range 500–2550). Tumor-related variables were broadly comparable, although T1 disease was more frequent in non-diabetic patients. During follow-up, 166 recurrences, 52 progressions, and 224 deaths occurred. Recurrence rates were 25.9%, 37.1%, and 24.5% in the metformin, diabetic non-metformin, and non-diabetic groups, respectively; corresponding 5-year RFS rates were 79.4%, 65.6%, and 79.1% ( p =0.066). Progression rates were 6.8%, 16.9%, and 7.0%, with 5-year PFS rates of 97.6%, 92.7%, and 96.5% ( p =0.007). OS differed significantly, favoring non-diabetic patients ( p <0.001). Multivariable Cox analysis did not confirm metformin exposure as an independent protective factor. In the propensity-matched analysis (78 pairs), metformin use was associated with lower progression risk (HR 0.32, 95% CI 0.12–0.88; p =0.028) and a non-significant trend toward lower recurrence (HR 0.62, 95% CI 0.35–1.09; p =0.095), with no difference in overall survival (HR 1.09, 95% CI 0.73–1.62; p =0.685). In BCG-treated NMIBC, metformin-exposed diabetic patients showed progression rates comparable to non-diabetic patients and lower than diabetic non-metformin users, an association that persisted in a propensity-matched sensitivity analysis. Because all metformin-exposed patients were diabetic, a direct antitumor effect of metformin cannot be established. Prospective studies incorporating diabetes severity, glycemic control, treatment duration, and adherence are warranted.

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BMC Urology
Published
2026-09-19
DOI
https://doi.org/10.1186/s12894-026-02370-4
Primary Topic
Metabolism, Diabetes, and Cancer
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article

Association of metformin exposure with oncological outcomes in BCG-treated non-muscle-invasive bladder cancer: a three-arm retrospective cohort study

Didem Derici Yıldırım, Ali Nebioğlu, Hasan Erdal Doruk, Cuma Aytekin et al.
BMC Urology
Metabolism, Diabetes, and Cancer
article

Association of metformin exposure with oncological outcomes in BCG-treated non-muscle-invasive bladder cancer: a three-arm retrospective cohort study

Didem Derici Yıldırım, Ali Nebioğlu, Hasan Erdal Doruk, Cuma Aytekin, Ahmet Nuray Turhan
article en

Abstract

To evaluate the association between metformin exposure and oncological outcomes in bacillus Calmette–Guérin (BCG)-treated non-muscle-invasive bladder cancer (NMIBC) using a three-arm cohort design. Because all metformin-exposed patients were diabetic, the study was not designed to establish a direct antitumor effect of metformin. This retrospective cohort included 624 patients with NMIBC treated with transurethral resection and intravesical BCG. Patients were classified as diabetic metformin users ( n =147), diabetic non-metformin users ( n =89), or non-diabetic patients ( n =388). Diabetes was defined as a previously documented diagnosis of type 2 diabetes mellitus and/or current antidiabetic therapy; patients with type 1 diabetes were excluded. Metformin exposure was defined as use concurrent with the BCG treatment period. The BCG regimen comprised 6 weekly induction instillations with maintenance instillations in eligible patients; no concomitant intravesical chemotherapy was administered. Recurrence-free survival (RFS), progression-free survival (PFS), and overall survival (OS) were assessed using Kaplan–Meier analysis, log-rank tests, and multivariable Cox regression adjusted for clinicopathological and treatment-related covariates. A propensity-score matched sensitivity analysis comparing diabetic metformin users with diabetic non-metformin users was also performed. The median follow-up was 64.8 months. Diabetic patients were older and had higher body mass index and Charlson comorbidity index values than non-diabetic patients. Among diabetic patients with available data, median HbA1c was 7.85% (interquartile range 6.9–8.5) in metformin users and 7.45% (6.7–8.5) in non-metformin users; the median metformin dose was 1500 mg/day (range 500–2550). Tumor-related variables were broadly comparable, although T1 disease was more frequent in non-diabetic patients. During follow-up, 166 recurrences, 52 progressions, and 224 deaths occurred. Recurrence rates were 25.9%, 37.1%, and 24.5% in the metformin, diabetic non-metformin, and non-diabetic groups, respectively; corresponding 5-year RFS rates were 79.4%, 65.6%, and 79.1% ( p =0.066). Progression rates were 6.8%, 16.9%, and 7.0%, with 5-year PFS rates of 97.6%, 92.7%, and 96.5% ( p =0.007). OS differed significantly, favoring non-diabetic patients ( p <0.001). Multivariable Cox analysis did not confirm metformin exposure as an independent protective factor. In the propensity-matched analysis (78 pairs), metformin use was associated with lower progression risk (HR 0.32, 95% CI 0.12–0.88; p =0.028) and a non-significant trend toward lower recurrence (HR 0.62, 95% CI 0.35–1.09; p =0.095), with no difference in overall survival (HR 1.09, 95% CI 0.73–1.62; p =0.685). In BCG-treated NMIBC, metformin-exposed diabetic patients showed progression rates comparable to non-diabetic patients and lower than diabetic non-metformin users, an association that persisted in a propensity-matched sensitivity analysis. Because all metformin-exposed patients were diabetic, a direct antitumor effect of metformin cannot be established. Prospective studies incorporating diabetes severity, glycemic control, treatment duration, and adherence are warranted.

BMC Urology
Mersin Şehir Eğitim ve Araştırma Hastanesi (TR), Mersin Üniversitesi (TR)
Good health and well-being
Openalex Percentile: Top 18%
Metabolism, Diabetes, and Cancer
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