Adjuvant nivolumab (NIVO) vs placebo (PBO) for high-risk muscle-invasive urothelial carcinoma (MIUC): Additional efficacy outcomes including overall survival (OS) in patients (pts) with muscle-invasive bladder cancer (MIBC) from CheckMate 274.

M Matthew I. Milowsky M Matthew D. Galsky (Division of Hematology and Medical Oncology, Icahn School of Medicine at Mount Sinai) J Johannes Alfred Witjes (Department of Urology, Radboud University, Nijmegen, Netherlands) J Jürgen E. Gschwend (Technical University Munich, Munich, Germany) M Michael Schenker (Department of Oncology, University of Medicine and Pharmacy of Craiova, Craiova, Romania) B Begona Perez Valderrama (Hospital Universitario Virgen del Rocio, Sevilla, Spain) Y Yoshihiko Tomita (Department of Urology, Niigata University Graduate School of Medicine and Dental, Niigata-Shi, Japan) A Aristotelis Bamias (Second Propaedeutic Department of Medicine, Attikon University Hospital, National and Kapodistrian University of Athens, Athens) T Thierry Lebret (Department of Urology, Suresnes, France) S Shahrokh F. Shariat S Se Hoon Park M Mads Agerbaek (Aarhus University Hospital, Aarhus, Denmark) G Gautam Gopalji Jha (University of Minnesota, Minneapolis, MN) F Frank Stenner (Department of Oncology, University Hospital Basel, Basel, Switzerland) D Dingwei Ye (Fudan University Shanghai Cancer Center, Shanghai) F Fabio Giudici (Bristol Myers Squibb, Boudry, Switzerland) J Jessica Connors (Bristol Myers Squibb, Princeton, NJ) J Joshua Zhang (UCLA) D Dean F. Bajorin (Memorial Sloan Kettering Cancer Center, New York, NY)

Abstract

658 Background: In the phase 3, randomized, double-blind CheckMate 274 trial, adjuvant NIVO demonstrated statistically significant and clinically meaningful disease-free survival (DFS) benefit vs PBO in pts with high-risk MIUC after radical surgery (RS) ± prior neoadjuvant cisplatin-based chemotherapy (NAC). With extended 3-y median follow-up, continued improvements in DFS were seen with NIVO vs PBO in the primary efficacy populations (intent-to-treat [ITT], tumor programmed death ligand 1 [PD-L1] expression ≥ 1%) and in pts with MIBC. Early trends in interim OS favored NIVO vs PBO in ITT and tumor PD-L1 ≥ 1% pts. Here we report additional efficacy outcomes for pts with MIBC. Methods: Pts were randomized 1:1 to NIVO 240 mg every 2 wk or PBO for ≤ 1 y of adjuvant treatment, stratified by tumor PD-L1 expression, nodal status, and prior NAC. Primary endpoints were DFS in ITT and tumor PD-L1 expression ≥ 1% pts. OS in ITT and PD-L1 ≥ 1% pts was a secondary endpoint. Analysis of MIBC pts was exploratory. MIBC OS data are from preplanned interim analyses of ITT and PD-L1 ≥ 1% pts. OS follow-up is ongoing as the prespecified statistical boundaries for significance in ITT and PD-L1 ≥ 1% pts were not crossed at the time of these analyses. Results: Of 709 randomized pts (ITT), 560 (79%) had MIBC (NIVO, n = 279; PBO, n = 281); 284 (51%) of MIBC pts had prior NAC. With median follow-up of 36.1 mo (ITT), DFS improvement with NIVO vs PBO was consistent between all pts with MIBC (hazard ratio [HR] 0.63) and those with (HR 0.58) and without prior NAC (HR 0.69; Table). For OS, HRs favored NIVO vs PBO in all pts with MIBC (HR 0.70) and the tumor PD-L1 ≥ 1% subgroup (HR 0.48), as well as in pts with MIBC with (HR 0.74) and without prior NAC (HR 0.67). Safety was consistent with previous data in ITT pts; no new safety signals were identified. Conclusions: With 3-y median follow-up, consistent benefit in DFS was observed with NIVO vs PBO in all MIBC pts and across prior NAC subgroups. The HR for OS favored NIVO in all MIBC pts, in those with PD-L1 ≥ 1%, and regardless of prior NAC status. These results continue to support adjuvant NIVO as a standard of care for high-risk MIUC and MIBC, potentially providing an opportunity for a curative outcome. Clinical trial information: NCT02632409 . NIVOn NIVOMedian(95% CI), mo PBOn PBOMedian(95% CI), mo HR (95% CI) DFS All MIBC 279 25.6 (19.2–41.8) 281 8.5 (7.3–13.7) 0.63 (0.51–0.78) With prior NAC 142 19.6 (15.6–48.2) 142 8.3 (5.6–11.2) 0.58 (0.43–0.79) No prior NAC 137 25.9 (19.2–51.5) 139 13.7 (7.8–22.1) 0.69 (0.50–0.94) OS All MIBC 279 NR (45.0–NE) 281 39.9 (29.8–52.1) 0.70 (0.55–0.90) PD-L1 ≥ 1% 113 NR (NE–NE) 117 37.6 (26.9–NE) 0.48 (0.29–0.77) With prior NAC 142 55.2 (41.8–NE) 142 40.2 (28.8–53.7) 0.74 (0.53–1.03) No prior NAC 137 NR (40.7–NE) 139 37.7 (28.7–65.2) 0.67 (0.47–0.95) NE, not estimable; NR, not reached.

Article Details

Volume / Issue Vol. 43, Issue 5_suppl
Published February 10, 2025
Pages 658-658
ISSN 0732-183X
Publisher Lippincott Williams & Wilkins

Journal Info

Journal of Clinical Oncology

Lippincott Williams & Wilkins

ISSN: 0732-183X Health Sciences

Authors (19)

M

Matthew I. Milowsky

M

Matthew D. Galsky

Division of Hematology and Medical Oncology, Icahn School of Medicine at Mount Sinai

J

Johannes Alfred Witjes

Department of Urology, Radboud University, Nijmegen, Netherlands

J

Jürgen E. Gschwend

Technical University Munich, Munich, Germany

M

Michael Schenker

Department of Oncology, University of Medicine and Pharmacy of Craiova, Craiova, Romania

B

Begona Perez Valderrama

Hospital Universitario Virgen del Rocio, Sevilla, Spain

Y

Yoshihiko Tomita

Department of Urology, Niigata University Graduate School of Medicine and Dental, Niigata-Shi, Japan

A

Aristotelis Bamias

Second Propaedeutic Department of Medicine, Attikon University Hospital, National and Kapodistrian University of Athens, Athens

T

Thierry Lebret

Department of Urology, Suresnes, France

S

Shahrokh F. Shariat

S

Se Hoon Park

M

Mads Agerbaek

Aarhus University Hospital, Aarhus, Denmark

G

Gautam Gopalji Jha

University of Minnesota, Minneapolis, MN

F

Frank Stenner

Department of Oncology, University Hospital Basel, Basel, Switzerland

D

Dingwei Ye

Fudan University Shanghai Cancer Center, Shanghai

F

Fabio Giudici

Bristol Myers Squibb, Boudry, Switzerland

J

Jessica Connors

Bristol Myers Squibb, Princeton, NJ

J

Joshua Zhang

UCLA

D

Dean F. Bajorin

Memorial Sloan Kettering Cancer Center, New York, NY