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Updated: Feb 7, 2026

Translational Orthotopic Models of Glioblastoma Multiforme
Published on: February 17, 2023
Lycorine inhibits glioblastoma multiforme growth through EGFR suppression
Jia Shen1,2, Tao Zhang3, Zheng Cheng3
1Institute of Biochemistry and Cell Biology, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, Shanghai, 200031, China.
Background:
Lycorine has been revealed to inhibit the development of many kinds of malignant tumors, including glioblastoma multiforme (GBM). Although compelling evidences demonstrated Lycorine's inhibition on cancers through some peripheral mechanism, in-depth mechanism studies of Lycotine's anti-GBM effects still call for further exploration. Epidermal Growth Factor Receptor (EGFR) gene amplification and mutations are the most common oncogenic events in GBM. Targeting EGFR by small molecular inhibitors is a rational strategy for GBM treatment.
Methods:
The molecular docking modeling and in vitro EGFR kinase activity system were employed to identify the potential inhibitory effects of Lycorine on EGFR. And the Biacore assay was used to confirm the direct binding status between Lycorine and the intracellular EGFR (696-1022) domain. In vitro assays were conducted to test the suppression of Lycorine on the biological behavior of GBM cells. By RNA interference, EGFR expression was reduced then cells underwent proliferation assay to investigate whether Lycorine's inhibition on GBM cells was EGFR-dependent or not. RT-PCR and western blotting analysis were carried out to investigate the underlined molecular mechanism that Lycorine exerted on EGFR itself and EGFR signaling pathway. Three different xenograft models (an U251-luc intracranially orthotopic transplantation model, an EGFR stably knockdown U251 subcutaneous xenograft model and a patient-derived xenograft model) were performed to verify Lycorine's therapeutic potential on GBM in vivo.
Results:
We identified a novel small natural molecule Lycorine binding to the intracellular EGFR (696-1022) domain as an inhibitor of EGFR. Lycorine decreased GBM cell proliferation, migration and colony formation by inducing cell apoptosis in an EGFR-mediated manner. Furthermore, Lycorine inhibited the xenograft tumor growths in three animal models in vivo. Besides, Lycorine impaired the phosphorylation of EGFR, AKT, which were mechanistically associated with expression alteration of a series of cell survival and death regulators and metastasis-related MMP9 protein.
Conclusions:
Our findings identify Lycorine directly interacts with EGFR and inhibits EGFR activation. The most significant result is that Lycorine displays satisfactory therapeutic effect in our patient-derived GBM tumor xenograft, thus supporting the conclusion that Lycorine may be considered as a promising candidate in clinical therapy for GBM.
Insights
Lycorine directly inhibits Epidermal Growth Factor Receptor (EGFR) activation, a key driver in glioblastoma multiforme (GBM). This natural compound shows therapeutic potential by reducing GBM tumor growth in preclinical models.
Area of Science:
- Biochemistry
- Molecular Biology
- Oncology
Background:
- Glioblastoma multiforme (GBM) is a highly aggressive brain tumor often driven by Epidermal Growth Factor Receptor (EGFR) alterations.
- Lycorine, a natural compound, has shown promise in inhibiting various cancers, but its specific anti-GBM mechanisms require further investigation.
- Targeting EGFR is a validated strategy for GBM treatment, necessitating the search for novel inhibitors.
Purpose of the Study:
- To investigate Lycorine's inhibitory effects on EGFR and its underlying mechanisms in GBM.
- To evaluate Lycorine's therapeutic potential against GBM in vitro and in vivo.
Main Methods:
- Molecular docking and in vitro kinase assays were used to assess Lycorine's interaction with EGFR.
- Biacore assays confirmed direct binding of Lycorine to the EGFR intracellular domain.
- In vitro GBM cell assays, RNA interference, RT-PCR, and western blotting were employed to study Lycorine's effects and mechanisms.
- Three distinct GBM xenograft models were utilized for in vivo efficacy evaluation.
Main Results:
- Lycorine was identified as a direct inhibitor of EGFR by binding to its intracellular domain.
- Lycorine suppressed GBM cell proliferation, migration, and colony formation, inducing apoptosis via EGFR-mediated pathways.
- In vivo studies demonstrated Lycorine's significant inhibition of tumor growth in multiple GBM xenograft models.
- Lycorine treatment led to decreased phosphorylation of EGFR and AKT, affecting cell survival and metastasis-related proteins.
Conclusions:
- Lycorine directly interacts with and inhibits EGFR activation, offering a novel therapeutic approach for GBM.
- Lycorine demonstrated significant therapeutic efficacy in a patient-derived GBM xenograft model.
- Lycorine is a promising candidate for clinical development in GBM therapy.
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