Javascript must be enabled to continue!
Abstract 1672: Synergistic efficacy of FGFR4 inhibitor (H3B-6527) and oxaliplatin combination therapy in gastric cancer models
View through CrossRef
Abstract
Background:
Resistance to chemotherapy remains a significant challenge in the treatment of gastric cancer. This study evaluates the therapeutic potential of a combination of the FGFR4 inhibitor H3B-6527 and Oxaliplatin in preclinical models, focusing on their synergistic effects on tumor suppression and cell death mechanisms.
Material and Methods:
To evaluate the efficacy of H3B-6527 and oxaliplatin combination, we employed IC50 analyses, colony formation assays, patient-derived xenograft (PDX) models, immunofluorescence (IF), immunohistochemistry (IHC), western blotting, and caspase-3/7 luminescence assays. These techniques were used to assess the impact of the drug combination on tumor cell proliferation, DNA damage, and apoptosis in gastric cancer cell lines (MKN28 and HGC27) and tumor tissues.
Results:
IC50 analyses demonstrated significantly enhanced sensitivity to the combination therapy in both MKN28 and HGC27 cell lines compared to either agent alone. Colony formation assays revealed that the combination therapy drastically reduced colony counts relative to monotherapies, highlighting its superior anti-proliferative effects. In PDX mouse models, the combination therapy led to pronounced tumor growth inhibition and significantly prolonged survival compared to controls. IF and IHC analyses showed marked increases in DNA damage, as evidenced by γH2AX expression, along with reduced proliferation (Ki67) and elevated apoptosis (cleaved caspase-3). Caspase-3/7 luminescence assays confirmed heightened apoptotic activity in treated cell lines. Western blot analysis revealed elevated levels of cleaved PARP and γH2AX in both gastric cancer cell lines and PDX tissues, corroborating the enhanced DNA damage and apoptotic response induced by the combination therapy.
Conclusions:
This study demonstrates the synergistic efficacy of H3B-6527 and oxaliplatin in promoting apoptosis, enhancing DNA damage, and inhibiting tumor proliferation in gastric cancer models. These findings provide compelling evidence for the potential clinical application of this drug combination as a promising therapeutic strategy for gastric cancer patients, especially those with chemoresistance.
Citation Format:
Nadeem Bhat, Mohammed Soutto, Ahmed Gomaa, Shoumin Zhu, Selma Maacha, Marwah Al-Mathkour, Mohammed Chwihne, Ahmed El-Rifai, Oliver McDonald, Wael El-Rifai. Synergistic efficacy of FGFR4 inhibitor (H3B-6527) and oxaliplatin combination therapy in gastric cancer models [abstract]. In: Proceedings of the American Association for Cancer Research Annual Meeting 2025; Part 1 (Regular Abstracts); 2025 Apr 25-30; Chicago, IL. Philadelphia (PA): AACR; Cancer Res 2025;85(8_Suppl_1):Abstract nr 1672.
American Association for Cancer Research (AACR)
Title: Abstract 1672: Synergistic efficacy of FGFR4 inhibitor (H3B-6527) and oxaliplatin combination therapy in gastric cancer models
Description:
Abstract
Background:
Resistance to chemotherapy remains a significant challenge in the treatment of gastric cancer.
This study evaluates the therapeutic potential of a combination of the FGFR4 inhibitor H3B-6527 and Oxaliplatin in preclinical models, focusing on their synergistic effects on tumor suppression and cell death mechanisms.
Material and Methods:
To evaluate the efficacy of H3B-6527 and oxaliplatin combination, we employed IC50 analyses, colony formation assays, patient-derived xenograft (PDX) models, immunofluorescence (IF), immunohistochemistry (IHC), western blotting, and caspase-3/7 luminescence assays.
These techniques were used to assess the impact of the drug combination on tumor cell proliferation, DNA damage, and apoptosis in gastric cancer cell lines (MKN28 and HGC27) and tumor tissues.
Results:
IC50 analyses demonstrated significantly enhanced sensitivity to the combination therapy in both MKN28 and HGC27 cell lines compared to either agent alone.
Colony formation assays revealed that the combination therapy drastically reduced colony counts relative to monotherapies, highlighting its superior anti-proliferative effects.
In PDX mouse models, the combination therapy led to pronounced tumor growth inhibition and significantly prolonged survival compared to controls.
IF and IHC analyses showed marked increases in DNA damage, as evidenced by γH2AX expression, along with reduced proliferation (Ki67) and elevated apoptosis (cleaved caspase-3).
Caspase-3/7 luminescence assays confirmed heightened apoptotic activity in treated cell lines.
Western blot analysis revealed elevated levels of cleaved PARP and γH2AX in both gastric cancer cell lines and PDX tissues, corroborating the enhanced DNA damage and apoptotic response induced by the combination therapy.
Conclusions:
This study demonstrates the synergistic efficacy of H3B-6527 and oxaliplatin in promoting apoptosis, enhancing DNA damage, and inhibiting tumor proliferation in gastric cancer models.
These findings provide compelling evidence for the potential clinical application of this drug combination as a promising therapeutic strategy for gastric cancer patients, especially those with chemoresistance.
Citation Format:
Nadeem Bhat, Mohammed Soutto, Ahmed Gomaa, Shoumin Zhu, Selma Maacha, Marwah Al-Mathkour, Mohammed Chwihne, Ahmed El-Rifai, Oliver McDonald, Wael El-Rifai.
Synergistic efficacy of FGFR4 inhibitor (H3B-6527) and oxaliplatin combination therapy in gastric cancer models [abstract].
In: Proceedings of the American Association for Cancer Research Annual Meeting 2025; Part 1 (Regular Abstracts); 2025 Apr 25-30; Chicago, IL.
Philadelphia (PA): AACR; Cancer Res 2025;85(8_Suppl_1):Abstract nr 1672.
Related Results
Abstract 1885: Potent tumoricidal activity of a FGFR4 CART in rhabdomyosarcoma
Abstract 1885: Potent tumoricidal activity of a FGFR4 CART in rhabdomyosarcoma
Abstract
Despite decades of multi-module therapies, RMS remains incurable once it has metastasized, thus new therapeutic strategies are warranted. FGFR4 is a develop...
Pembrolizumab and Sarcoma: A meta-analysis
Pembrolizumab and Sarcoma: A meta-analysis
Abstract
Introduction: Pembrolizumab is a monoclonal antibody that promotes antitumor immunity. This study presents a systematic review and meta-analysis of the efficacy and safety...
Small Cell Lung Cancer and Tarlatamab: A Meta-Analysis of Clinical Trials
Small Cell Lung Cancer and Tarlatamab: A Meta-Analysis of Clinical Trials
Abstract
Introduction
Tarlatamab is a Delta-like ligand 3 (DLL3) -directed bispecific T-cell engager recently approved for use in patients with advanced small cell lung cancer (SCL...
Analysis of Related Risk Factors and Prognostic Factors of Gastric Cancer with Bone Metastasis: A SEER-Based Study
Analysis of Related Risk Factors and Prognostic Factors of Gastric Cancer with Bone Metastasis: A SEER-Based Study
Background. Gastric cancer is among the most common malignant tumors at home and abroad, because its early symptoms are mostly insidious, which leads to distant metastasis when gas...
Oxaliplatin resistance is enhanced by saracatinib via upregulation Wnt-ABCG1 signaling in hepatocellular carcinoma
Oxaliplatin resistance is enhanced by saracatinib via upregulation Wnt-ABCG1 signaling in hepatocellular carcinoma
Abstract
Background: Chemo-resistance in hepatocellular carcinoma (HCC) is a major problem, and acquired drug resistance prevents cancer therapies from achieving complete r...
Oxaliplatin resistance is enhanced by saracatinib via upregulation Wnt-ABCG1 signaling in hepatocellular carcinoma
Oxaliplatin resistance is enhanced by saracatinib via upregulation Wnt-ABCG1 signaling in hepatocellular carcinoma
Abstract
Background: Chemo-resistance in hepatocellular carcinoma (HCC) is a major problem, and acquired drug resistance prevents cancer therapies from achieving complete r...
Oxaliplatin resistance is enhanced by saracatinib via upregulation Wnt-ABCG1 signaling in hepatocellular carcinoma
Oxaliplatin resistance is enhanced by saracatinib via upregulation Wnt-ABCG1 signaling in hepatocellular carcinoma
Abstract
Background: Chemo-resistance in hepatocellular carcinoma (HCC) is a major problem, and acquired drug resistance prevents cancer therapies from achieving complete r...
Oxaliplatin resistance is enhanced by saracatinib via upregulation Wnt-ABCG1 signaling in hepatocellular carcinoma
Oxaliplatin resistance is enhanced by saracatinib via upregulation Wnt-ABCG1 signaling in hepatocellular carcinoma
Abstract
Background: Chemo-resistance in hepatocellular carcinoma (HCC) is a major problem, and acquired drug resistance prevents cancer therapies from achieving complete r...

