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Updated: Mar 2, 2026

Real-time Bioluminescence Imaging of Notch Signaling Dynamics during Murine Neurogenesis
Published on: December 12, 2019
Notch ligand Delta-like 1 as a novel molecular target in childhood neuroblastoma
P Bettinsoli1, G Ferrari-Toninelli2, S A Bonini2
1Department of Molecular and Translational Medicine, University of Brescia Medical School, Viale Europa, 11, Brescia, Italy. paola.bettinsoli@unibs.it.
Background:
Neuroblastoma is the most common extracranial solid malignancy in childhood, responsible for 15% of all pediatric cancer deaths. It is an heterogeneous disease that does not always respond to classical therapy; so the identification of new and specific molecular targets to improve existing therapy is needed. We have previously demonstrated the involvement of the Notch pathway in the onset and progression of neuroblastoma. In this study we further investigated the role of Notch signaling and identified Delta-like 1 (DLL1) as a novel molecular target in neuroblastoma cells with a high degree of MYCN amplification, which is a major oncogenic driver in neuroblastoma. The possibility to act on DLL1 expression levels by using microRNAs (miRNAs) was assessed.
Methods:
DLL1 mRNA and protein expression levels were measured in three different neuroblastoma cell lines using quantitative real-time PCR and Western Blot analysis, respectively. Activation of the Notch pathway as a result of increased levels of DLL1 was analyzed by Immunofluorescence and Western Blot methods. In silico tools revealed the possibility to act on DLL1 expression levels with miRNAs, in particular with the miRNA-34 family. Neuroblastoma cells were transfected with miRNA-34 family members, and the effect of miRNAs transfection on DLL1 mRNA expression levels, on cell differentiation, proliferation and apoptosis was measured.
Results:
In this study, the DLL1 ligand was identified as the Notch pathway component highly expressed in neuroblastoma cells with MYCN amplification. In silico analysis demonstrated that DLL1 is one of the targets of miRNA-34 family members that maps on chromosome regions that are frequently deregulated or deleted in neuroblastoma. We studied the possibility to use miRNAs to target DLL1. Among all miRNA-34 family members, miRNA-34b is able to significantly downregulate DLL1 mRNA expression levels, to arrest cell proliferation and to induce neuronal differentiation in malignant neuroblastoma cells.
Conclusions:
Targeted therapies have emerged as new strategies for cancer treatment. This study identified the Notch ligand DLL1 as a novel and attractive molecular target in childhood neuroblastoma and its results could help to devise a targeted therapy using miRNAs.
Insights
This study identifies Delta-like 1 (DLL1) as a key target in neuroblastoma, a common childhood cancer. Targeting DLL1 with microRNA-34b shows promise for new therapies by reducing cancer cell growth and promoting differentiation.
Area of Science:
- Pediatric Oncology
- Molecular Biology
- Cancer Genetics
Background:
- Neuroblastoma is the leading cause of cancer death in children, often resistant to conventional treatments.
- The Notch pathway is implicated in neuroblastoma development and progression.
- Novel molecular targets are crucial for improving neuroblastoma therapy.
Purpose of the Study:
- To investigate the role of Notch signaling in neuroblastoma.
- To identify DLL1 as a specific molecular target in MYCN-amplified neuroblastoma.
- To assess the potential of microRNAs (miRNAs) to target DLL1.
Main Methods:
- Quantitative real-time PCR and Western Blot to measure DLL1 expression.
- Immunofluorescence and Western Blot to analyze Notch pathway activation.
- In silico analysis to identify targeting miRNAs, followed by miRNA transfection experiments.
Main Results:
- DLL1 is highly expressed in neuroblastoma cells with MYCN amplification.
- miRNA-34b significantly downregulates DLL1 mRNA levels.
- miRNA-34b treatment inhibits neuroblastoma cell proliferation and induces neuronal differentiation.
Conclusions:
- DLL1 is a novel molecular target in childhood neuroblastoma.
- Targeting DLL1 with miRNA-34b offers a potential therapeutic strategy.
- This approach could lead to new targeted therapies for neuroblastoma.
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