| Literature DB >> 34368297 |
Chao Liang1, Heng-Miao Wu2, Wei-Ming Yu1, Wei Chen3.
Abstract
The breakthrough of immune checkpoint inhibitor (ICI) therapy has created extensive opportunities for cancer immunotherapy. Especially, the block of programmed death-1/programmed death ligand 1 (PD-L1) axis using ICIs has become a new therapeutic strategy to treat advanced gastric cancer (GC). However, in the past decade, single-arm and randomized trials for single-drug ICI therapy showed that the therapeutic effect was not satisfactory, including clinical trials for advanced GC. However, after selecting suitable predictive biomarkers and developing a combination of anti-angiogenic targeted drugs and other chemotherapeutic drugs, the objective response rate and progression-free survival of patients with gastric cancer were improved significantly. The United States Food and Drug Administration has approved treatment with pembrolizumab for patients with advanced GC with PD-L1 expression or microsatellite instability-high/mismatch repair deficiency. In this review, the updated data from the latest trial results of combination immunotherapy for GC are presented. Based on the outcome of combination therapy, we discuss its possible molecular mechanism and summarize effective predictive biomarkers. We also discuss possible problems stemming from results of other clinical trials of ICI treatment and propose other directions for ICI therapy. ©The Author(s) 2021. Published by Baishideng Publishing Group Inc. All rights reserved.Entities:
Keywords: Clinical trial; Gastric cancer; Immune checkpoint inhibitor; Immunotherapy; Neoadjuvant therapy
Year: 2021 PMID: 34368297 PMCID: PMC8316931 DOI: 10.12998/wjcc.v9.i21.5782
Source DB: PubMed Journal: World J Clin Cases ISSN: 2307-8960 Impact factor: 1.337
Current clinical trial results of immune checkpoint inhibitors for gastric cancer
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| Kawazoe | 2 | GC | 29 | Pembrolizumab + lenvatinib | ORR 69% (95%CI: 49-85) mPFS 7.1 mo (95%CI: 5.4-13.7) | EPOC1706 (NCT03609359) |
| Kawazoe | 2b | GC/GEJC | 54 | Pembrolizumab + SOX | ORR 72.2% (95%CI: 58.4-83.5) mPFS 6.9 mo (95%CI: 5.6-8.3) | KEYNOTE-659 (NCT03382600) |
| Catenacci | 1b-2 | GEJC | 92 | Margetuximab + pembrolizumab | ORR 18% (95%CI: 11-28) mPFS 2.73 mo | CP-MGAH22-05 (NCT02689284) |
| Bang | 2 | GC/GEJC | 25 | Pembrolizumab + SOC | ORR 60.0% (95%CI: 38.7-78.9) mPFS 6.6 mo (95%CI: 5.9-10.6) | KEYNOTE-059 (NCT02335411) |
| 31 | Pembrolizumab | ORR 25.8% (95%CI: 11.9–44.6) mPFS 3.3 mo (95%CI: 2.0-6.0) | ||||
| Tabernero | 3 | GC/GEJC | 256 | Pembrolizumab | ORR 14.5% (95%CI: 10.4-19.4) mPFS 2.0 mo (95%CI: 1.5-2.8) | KEYNOTE-062 (NCT02494583) |
| 257 | Pembrolizumab + SOC | ORR 48.6% (95%CI: 42.4-54.9) mPFS 6.9 mo (95%CI: 5.7-7.3) | ||||
| 250 | Placebo + SOC | ORR 36.8% (95%CI: 30.8-43.1) mPFS 6.4 mo (95%CI: 5.7-7.0) | ||||
| Boku | 2 | G/GEJ | 21 | Nivolumab + SOX | ORR 57.1% (95%CI: 34.0-78.2) mPFS 9.7 mo (95%CI: 5.8-NR) | ATTRACTION-4 (NCT02746796) |
| 18 | Nivolumab + CapeOX | ORR 76.5% (95%CI: 50.1-93.2) mPFS 10.6 m0 (95%CI: 5.6-12.5) |
GC: Gastric cancer; GEJC: Gastroesophageal junction cancer; SOC: Standard of care; SOX: S-1 plus oxaliplatin; CapeOX: Capecitabine plus oxaliplatin; ORR: Objective response rate; mPFS: Median progression-free survival; CI: Confidence interval.
Figure 1Combined action mechanism of vascular endothelial growth factor monoclonal antibody and immune checkpoint inhibitor monoclonal antibody. A: Impacting on immune-related mechanisms via vascular endothelial growth factor (VEGF); B: VEGF receptor (VEGFR) monoclonal antibody (mAb) arouses the normalization of tumor blood vessels, the down-regulation of immunosuppressive cells, and the activity and infiltration of cytotoxic T lymphocytes (CTL). Simultaneously, immune checkpoint inhibitor mAb restores the function of CTL to recognize tumor cells, thereby killing tumor cells and releasing immunogenic antigen. VEGF: Vascular endothelial growth factor; VEGFR: Vascular endothelial growth factor receptor; DC: Dendritic cells; CTL: Cytotoxic T lymphocytes; VCAM-1: Vascular endothelial cell adhesion molecule-1; MDSC: Myeloidderived inhibitor cells; TAM: Tumor-associated macrophages; Treg: Regulatory T; mAb: Monoclonal antibody; ICI: Immune checkpoint inhibitor. Figure 1 was produced with the assistance of Servier Medical Art (https://smart.servier.com), which provides free and open pictures.