Clinico-molecular characteristics and enhanced efficacy of immune checkpoint inhibitors in <i>TP53</i> -mutated advanced biliary tract cancer.
Abstract
4119 Background: TP53 mutations are frequent genetic alterations in cancers and also prevalent in biliary tract cancer (BTC). In non-small cell lung cancer, TP53 mutations have been reported to enhance immune checkpoint inhibitor (ICI) efficacy and improve outcomes. However, their impact on BTC remains unclear. This study investigated the clinico-molecular characteristics, prognosis, and ICI efficacy in TP53 -mutated BTC. Methods: Patient data were collected from the SCRUM-Japan GOZILA and MONSTAR-SCREEN-1/2 databases (Japan) and the Duke university and Mayo clinic databases (U.S.), which included patients receiving first-line ICI therapy. Comparisons between TP53 wild-type (WT) and mutation groups were performed in the Japanese cohort. Subsequently, analyses were expanded to include U.S. patients, focusing on comparisons between non-ICI and ICI groups. Tumor Immune Dysfunction and Exclusion (TIDE) scores were calculated using MONSTAR-SCREEN-2 whole transcriptome sequencing (WTS) data to evaluate ICI responsiveness, and gene set enrichment analysis (GSEA) explored pathways associated with TP53 mutations. Results: In the Japanese cohort (n=594), TP53 mutations were identified in 311 patients (52.4%). KRAS , ERBB2 , CDKN2A , and SMAD4 alterations were more frequent in the TP53 mutation group, while IDH1, BAP1 , and FGFR2 fusions were more common in the WT group. Multivariable analysis showed TP53 mutations were independent prognostic factors for poor outcomes (progression-free survival [PFS]: HR 1.37, 95% CI: 1.11–1.69, P=0.003; overall survival [OS]: HR 1.36, 95% CI: 1.06–1.75, P=0.017). Incorporating the U.S. cohort (n=625; non-ICI: 548; ICI: 77), no significant differences in overall response rate (ORR) or disease control rate (DCR) were observed in the non-ICI group between the groups. However, in the ICI group, TP53 mutations tended to show higher ORR (21.1% vs. 38.5%, P=0.16) and DCR (47.4% vs. 66.7%, P=0.14). In the non-ICI group, TP53 mutations were associated with worse PFS (HR 1.46, median PFS: 7.4 vs. 5.3 months, P<0.001), whereas, in the ICI group, no significant difference was observed; however, a trend toward better PFS was seen in the TP53 mutation group (median PFS: 5.0 vs. 6.4 months, P=0.163). TIDE scores were significantly lower in the TP53 mutation group, indicating higher ICI responsiveness. GSEA revealed enrichment of oxidative phosphorylation and hypoxia pathways. Conclusions: TP53 mutations are independent prognostic factors for poor outcomes in BTC. However, patients with TP53 mutations may derive greater benefits from ICIs, underscoring the importance of tailored therapeutic strategies in TP53- mutated BTC.
Article Details
Journal Info
Journal of Clinical Oncology
Lippincott Williams & Wilkins
Authors (20)
Taro Shibuki
Celine Hoyek
Division of Internal Medicine, Mayo Clinic Arizona, Phoenix, AZ
Ryne Ramaker
Duke Cancer Institute, Duke University, Durham, NC
Madhuri Gottam
Duke Cancer Institute, Phoenix, AZ
Makoto Ueno
Yasuyuki Kawamoto
Shinji Itoh
Department of Surgery and Science, Graduate School of Medical Sciences, Kyushu University, Fukuoka, Japan
Takao Fujisawa
Mitsuho Imai
Translational Research Supporting Office, National Cancer Center Hospital East, Kashiwa, Japan
Yoshiaki Nakamura
Hideaki Bando
Angelo Pirozzi
Division of Hematology and Oncology, Mayo Clinic Arizona, Phoenix, AZ
Binbin Zheng-Lin
Earle A. Chiles Research Institute, Portland, OR
Oluseyi Abidoye
Division of Hematology and Oncology, Mayo Clinic Arizona, Phoenix, AZ
Cody Eslinger
Department of Hematology and Oncology, Mayo Clinic Arizona, Phoenix, AZ
Chigusa Morizane
John H. Strickler
Takayuki Yoshino
National Cancer Center Hospital East, Kashiwa, Japan
Tanios S. Bekaii-Saab
Masafumi Ikeda