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Updated: Apr 8, 2026

A Human Glioblastoma Organotypic Slice Culture Model for Study of Tumor Cell Migration and Patient-specific Effects of Anti-Invasive Drugs
Published on: July 20, 2017
Src family kinases differentially influence glioma growth and motility
Laura J Lewis-Tuffin1, Ryan Feathers1, Priya Hari1
1Department of Cancer Cell Biology, Mayo Clinic, 4500 San Pablo Road South, Jacksonville, FL 32224, USA.
Abstract:
Src-family kinase (SFK) signaling impacts multiple tumor-related properties, particularly in the context of the brain tumor glioblastoma. Consequently, the pan-SFK inhibitor dasatinib has emerged as a therapeutic strategy, despite physiologic limitations to its effectiveness in the brain. We investigated the importance of individual SFKs (Src, Fyn, Yes, and Lyn) to glioma tumor biology by knocking down individual SFK expression both in culture (LN229, SF767, GBM8) and orthotopic xenograft (GBM8) contexts. We evaluated the effects of these knockdowns on tumor cell proliferation, migration, and motility-related signaling in culture, as well as overall survival in the orthotopic xenograft model. The four SFKs differed significantly in their importance to these properties. In culture, Src, Fyn, and Yes knockdown generally reduced growth and migration and altered motility-related phosphorylation patterns while Lyn knockdown did so to a lesser extent. However the details of these effects varied significantly depending on the cell line: in no case were conclusions about the role of a particular SFK applicable to all of the measures or all of the cell types examined. In the orthotopic xenograft model, mice implanted with non-target or Src or Fyn knockdown cells showed no differences in survival. In contrast, mice implanted with Yes knockdown cells had longer survival, associated with reduced tumor cell proliferation. Those implanted with Lyn knockdown cells had shorter survival, associated with higher overall tumor burden. Together, our results suggest that Yes signaling directly affects tumor cell biology in a pro-tumorigenic manner, while Lyn signaling affects interactions between tumor cells and the microenvironment in an anti-tumor manner. In the context of therapeutic targeting of SFKs, these results suggest that pan-SFK inhibitors may not produce the intended therapeutic benefit when Lyn is present.
Insights
Investigating individual Src-family kinases (SFKs) in glioblastoma revealed Yes promotes tumor growth, while Lyn influences the tumor microenvironment. Targeting SFKs requires understanding specific kinase roles for effective brain tumor therapy.
Area of Science:
- Oncology
- Molecular Biology
- Neuroscience
Background:
- Src-family kinases (SFKs) are crucial in glioblastoma, a brain tumor.
- The pan-SFK inhibitor dasatinib is a therapeutic strategy, but faces challenges in brain delivery.
- Understanding individual SFK roles is vital for targeted glioblastoma therapy.
Purpose of the Study:
- To investigate the distinct roles of individual SFKs (Src, Fyn, Yes, Lyn) in glioma biology.
- To evaluate the impact of SFK knockdown on tumor cell proliferation, migration, and survival.
- To assess SFK contributions in both cell culture and orthotopic xenograft models.
Main Methods:
- Knockdown of individual SFKs (Src, Fyn, Yes, Lyn) in human glioblastoma cell lines (LN229, SF767, GBM8).
- Assessment of tumor cell proliferation and migration in vitro.
- Evaluation of overall survival and tumor burden in orthotopic xenograft models (GBM8).
Main Results:
- In cell culture, Src, Fyn, and Yes knockdown reduced proliferation and migration; Lyn had a lesser effect.
- Effects varied significantly by cell line, indicating context-dependent SFK roles.
- In vivo, Yes knockdown increased survival (reduced proliferation), while Lyn knockdown decreased survival (increased tumor burden).
Conclusions:
- Yes signaling promotes glioblastoma growth, while Lyn signaling impacts the tumor microenvironment.
- Individual SFK functions differ, suggesting targeted therapies should consider specific kinase roles.
- Pan-SFK inhibitors may be less effective if Lyn signaling is present and beneficial.
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