Real-world outcomes and prognostic role of neutrophil-to-lymphocyte ratio (NLR) in patients with advanced urothelial carcinoma treated with enfortumab vedotin plus pembrolizumab (EVP).

S Samad Sayed (Arthur JE Child Comprehensive Cancer Centre, Calgary, AB, Canada) R Rishikesh Kumar (Cross Cancer Institute, Edmonton, AB, Canada) M Martin Zarba (Arthur JE Child Comprehensive Cancer Centre, University of Calgary, Calgary, AB, Canada) A Amina Taleb (Jack Ady Cancer Centre, Alberta Health Services, Lethbridge, AB, Canada) S Simon Mairs (AHS, Red Deer, AB, Canada) N Naveen S. Basappa M Michael Paul Kolinsky (Cross Cancer Institute, Edmonton, AB, Canada) M Meghan Elizabeth Mahoney (Arthur JE Child Comprehensive Cancer Centre, Alberta Health Services, Calgary, AB, Canada) S Safiya Karim (Arthur JE Child Comprehensive Cancer Centre, Calgary, AB, Canada) V Vishal Navani (Arthur JE Child Comprehensive Cancer Centre, University of Calgary, Calgary, AB, Canada) T Tina Cheng (Tom Baker Cancer Centre, University of Calgary, Calgary, AB, Canada) R Richard M. Lee-Ying (Arthur JE Child Comprehensive Cancer Centre, Calgary, AB, Canada) S Scott A. North (Cross Cancer Institute, Edmonton, AB, Canada) D Daniel Yick Chin Heng (Department of Medical Oncology, Arthur JE Child Comprehensive Cancer Centre, University of Calgary, Calgary, AB, Canada) S Steven M. Yip (Arthur JE Child Comprehensive Cancer Centre, University of Calgary, Calgary, AB, Canada) N Nimira S. Alimohamed (Arthur JE Child Comprehensive Cancer Centre, University of Calgary, Calgary, AB, Canada)

Abstract

187 Background: EVP has demonstrated a significant survival benefit in advanced urothelial carcinoma (aUC) in clinical trials. However, real-world data evaluating outcomes and early prognostic biomarkers in this setting is limited. We assessed real-world outcomes and explored the prognostic value of neutrophil-to-lymphocyte ratio (NLR), focusing on NLR prior to cycle 3 (NLR3) and the dynamic change in NLR (dNLR), in aUC patients treated with first-line EVP. Methods: We conducted a retrospective, multicenter analysis of patients with aUC treated with EVP in Alberta, Canada between September 2024 and January 2026, with a minimum follow-up of 3 months. NLR3 and dNLR were evaluated. High NLR3 was defined as ≥ 2.7. dNLR was defined as the relative change from baseline to pre-cycle 3 and categorized as a decrease > 10% versus stable/increase (≤10% decrease or any increase). Objective response rate (ORR), progression-free survival (PFS), and overall survival (OS) were analyzed. Results: Sixty patients were included (median age 69 years, 82% male). Primary tumor site was bladder in 41 patients and upper genitourinary tract in 14. Histology was pure urothelial carcinoma in 48 patients and mixed histology in 12. 33 patients had visceral metastases; most commonly involving lung (n = 16), bone (n = 12) and liver (n = 12). 15 patients had lymph node–only metastases and 12 had locally advanced unresectable disease. FGFR testing was performed in 31 patients, with alterations identified in 8. Median follow-up was 10.3 months, and the median number of EVP cycles administered was 8. The overall ORR was 62%, and 1-year PFS was 42%. Patients with low NLR3 had higher ORR (82% vs 55%; OR 0.26, 95% CI 0.07–0.96; p = 0.037) and superior survival, including PFS (1-yr 75% vs 27%; HR 0.16, 95% CI 0.04–0.54; p = 0.003) and OS (1-yr 100% vs 50%; p = 0.005) compared to high NLR3. NLR decrease > 10% was associated with better PFS (1-yr 70% vs 26%; HR 0.31; 95% CI 0.12–0.75 p = 0.01). OS difference was numerically higher with NLR decrease > 10% but not statistically significant (1-yr 73% vs 59%; p = 0.11). Conclusions: In this real-world cohort of patients with aUC treated with EVP, low NLR3 and early NLR decline were associated with higher response rates and improved survival. NLR3 and dynamic NLR changes are simple, readily available biomarkers that provide early prognostic information and may support risk stratification in routine clinical practice. NLR3, dynamic NLR, and impact on patient outcomes. NLR3 low (<2.7) vs high (≥2.7) dNLR decrease >10% vs dNLR stable/increase ORR (95% CI, p-value) 81.8% vs 54.5% (0.07–0.96; p = 0.037) 69% vs 61% (0.23–2.19; p = 0.56) 1 year PFS HR- 95% CI, p-value) 75% vs 27% (0.16, CI 0.04–0.54; p = 0.003) 70% vs 26% (0.31, 95% CI 0.12–0.75; p = 0.01) 1yr OS (log rank p-value) 100% vs 50% (p = 0.005) 72% vs 59% (p = 0.109)

Article Details

Volume / Issue Vol. 44, Issue 19_suppl
Published July 01, 2026
Pages 187-187
ISSN 0732-183X
Publisher Lippincott Williams & Wilkins

Journal Info

Journal of Clinical Oncology

Lippincott Williams & Wilkins

ISSN: 0732-183X Health Sciences

Authors (16)

S

Samad Sayed

Arthur JE Child Comprehensive Cancer Centre, Calgary, AB, Canada

R

Rishikesh Kumar

Cross Cancer Institute, Edmonton, AB, Canada

M

Martin Zarba

Arthur JE Child Comprehensive Cancer Centre, University of Calgary, Calgary, AB, Canada

A

Amina Taleb

Jack Ady Cancer Centre, Alberta Health Services, Lethbridge, AB, Canada

S

Simon Mairs

AHS, Red Deer, AB, Canada

N

Naveen S. Basappa

M

Michael Paul Kolinsky

Cross Cancer Institute, Edmonton, AB, Canada

M

Meghan Elizabeth Mahoney

Arthur JE Child Comprehensive Cancer Centre, Alberta Health Services, Calgary, AB, Canada

S

Safiya Karim

Arthur JE Child Comprehensive Cancer Centre, Calgary, AB, Canada

V

Vishal Navani

Arthur JE Child Comprehensive Cancer Centre, University of Calgary, Calgary, AB, Canada

T

Tina Cheng

Tom Baker Cancer Centre, University of Calgary, Calgary, AB, Canada

R

Richard M. Lee-Ying

Arthur JE Child Comprehensive Cancer Centre, Calgary, AB, Canada

S

Scott A. North

Cross Cancer Institute, Edmonton, AB, Canada

D

Daniel Yick Chin Heng

Department of Medical Oncology, Arthur JE Child Comprehensive Cancer Centre, University of Calgary, Calgary, AB, Canada

S

Steven M. Yip

Arthur JE Child Comprehensive Cancer Centre, University of Calgary, Calgary, AB, Canada

N

Nimira S. Alimohamed

Arthur JE Child Comprehensive Cancer Centre, University of Calgary, Calgary, AB, Canada