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Updated: Apr 29, 2026

Kinase Inhibitor Screening In Self-assembled Human Protein Microarrays
Published on: October 23, 2019
The novel kinase inhibitor EMD1214063 is effective against neuroblastoma
Kathy Scorsone1, Linna Zhang, Sarah E Woodfield
1Department of Pediatrics, Section of Hematology-Oncology, Baylor College of Medicine, Houston, TX, USA.
Background:
Children with high-risk neuroblastoma have poor survival rates, and novel therapies are needed. Previous studies have identified a role for the HGF/c-Met pathway in neuroblastoma pathogenesis. We hypothesized that EMD1214063 would be effective against neuroblastoma tumor cells and tumors in preclinical models via inhibition of HGF/c-Met signaling. Methods We determined the expression of c-Met protein by Western blots in a panel of neuroblastoma tumor cell lines and neuroblastoma cell viability after treatment with EMD1214063 using MTT assays. TUNEL assays and assays for DNA ladder formation, were performed to measure the induction of apoptosis after EMD1214063 treatment. Inhibition of intracellular signaling was measured by Western blot analysis of treated and untreated cells. To investigate the efficacy of EMD1214063 against neuroblastoma tumors in vivo, neuroblastoma cells were injected orthotopically into immunocompromised mice, and mice were treated with oral EMD1214063. Tumors were evaluated for growth, histologic appearance, and induction of apoptosis by immunohistochemistry. Results All neuroblastoma cell lines were sensitive to EMD1214063, and IC50 values ranged from 2.4 to 8.5 μM. EMD1214063 treatment inhibited HGF-mediated c-Met phosphorylation and MEK phosphorylation in neuroblastoma cells. EMD1214063 induced apoptosis in all tested cell lines. In mice with neuroblastoma xenograft tumors, EMD1214063 treatment reduced tumor growth. Conclusions Treatment of neuroblastoma tumor cells with EMD1214063 inhibits HGF-induced c-Met phosphorylation and results in cell death. EMD1214063 treatment is also effective in reducing tumor growth in vivo. EMD1214063 therefore represents a novel therapeutic agent for neuroblastoma, and further preclinical studies of EMD1214063 are warranted.
Insights
EMD1214063 effectively inhibits the HGF/c-Met pathway in neuroblastoma cells, inducing cell death and reducing tumor growth in preclinical models. This novel agent shows promise for treating high-risk neuroblastoma, warranting further investigation.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- High-risk neuroblastoma presents significant survival challenges, necessitating novel therapeutic strategies.
- The hepatocyte growth factor (HGF)/c-Met pathway is implicated in neuroblastoma development and progression.
- Targeting the HGF/c-Met pathway offers a potential therapeutic avenue for neuroblastoma.
Purpose of the Study:
- To evaluate the efficacy of EMD1214063, a novel HGF/c-Met signaling inhibitor, against neuroblastoma.
- To investigate the preclinical therapeutic potential of EMD1214063 in neuroblastoma cell lines and animal models.
Main Methods:
- Western blot analysis to determine c-Met protein expression and intracellular signaling inhibition.
- MTT assays to assess neuroblastoma cell viability and IC50 values following EMD1214063 treatment.
- TUNEL assays and DNA ladder formation assays to measure apoptosis induction.
- Orthotopic neuroblastoma xenograft mouse models to evaluate in vivo tumor growth and apoptosis via immunohistochemistry.
Main Results:
- All tested neuroblastoma cell lines demonstrated sensitivity to EMD1214063, with IC50 values ranging from 2.4 to 8.5 μM.
- EMD1214063 effectively inhibited HGF-mediated c-Met phosphorylation and downstream MEK phosphorylation.
- Treatment with EMD1214063 induced apoptosis in all neuroblastoma cell lines and significantly reduced tumor growth in vivo.
Conclusions:
- EMD1214063 demonstrates potent inhibition of HGF/c-Met signaling, leading to neuroblastoma cell death.
- EMD1214063 exhibits significant anti-tumor efficacy in preclinical neuroblastoma models.
- EMD1214063 represents a promising novel therapeutic candidate for neuroblastoma, meriting further preclinical development.
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