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LPPR5 Expression in Glioma Affects Growth, Vascular Architecture, and Sunitinib Resistance
Lena Stange1, Kristin Elizabeth Lucia1, Adnan Ghori2
1Department of Neurosurgery, University Hospital Frankfurt, 60528 Frankfurt am Main, Germany.
Abstract:
Despite intensive research, glioblastoma remains almost invariably fatal. Various promising drugs targeting specific aspects of glioma biology, in addition to or as an alternative to antiproliferative chemotherapy, were not successful in larger clinical trials. Further insights into the biology of glioma and the mechanisms behind the evasive-adaptive response to targeted therapies is needed to help identify new therapeutic targets, prognostics, or predictive biomarkers. As a modulator of the canonically oncogenic Rho-GTPase pathway, Lipid phosphate phosphatase-related protein type 5 (LPPR5) is pivotal in influencing growth, angiogenesis, and therapeutic resistance. We used a GL261 murine orthotopic allograft glioma model to quantify the tumor growth and to obtain tissue for histological and molecular analysis. Epicortical intravital epi-illumination fluorescence video microscopy of the tumor cell spheroids was used to characterize the neovascular architecture and hemodynamics. GL261-glioma growth was delayed and decelerated after LPPR5 overexpression (LPPR5OE). We observed increased tumor cell apoptosis and decreased expression and secretion of vascular endothelial growth factor A in LPPR5OE glioma. Hence, an altered micro-angioarchitecture consisting of dysfunctional small blood vessels was discovered in the LPPR5OE tumors. Sunitinib therapy eliminated these vessels but had no effect on tumor growth or apoptosis. In general, LPPR5 overexpression generated a more benign, proapoptotic glioma phenotype with delayed growth and a dysfunctional vascular architecture.
Insights
Lipid phosphate phosphatase-related protein type 5 (LPPR5) overexpression slows glioblastoma growth by increasing apoptosis and disrupting tumor blood vessels. This suggests LPPR5 as a potential therapeutic target for glioblastoma.
Area of Science:
- Neuro-oncology
- Cancer Biology
- Molecular Therapeutics
Background:
- Glioblastoma (GBM) remains a fatal brain tumor with limited treatment options.
- Targeted therapies have shown limited success due to tumor adaptive resistance.
- Understanding glioma biology is crucial for identifying new therapeutic strategies.
Purpose of the Study:
- To investigate the role of Lipid phosphate phosphatase-related protein type 5 (LPPR5) in glioblastoma growth and response to therapy.
- To evaluate LPPR5 as a potential therapeutic target or biomarker for glioblastoma.
Main Methods:
- Utilized a GL261 murine orthotopic allograft glioma model.
- Employed epicortical intravital epi-illumination fluorescence video microscopy to analyze tumor vascularization.
- Quantified tumor growth, apoptosis, and vascular endothelial growth factor A (VEGF-A) expression.
Main Results:
- LPPR5 overexpression (LPPR5OE) significantly delayed and decelerated GL261-glioma growth.
- LPPR5OE led to increased tumor cell apoptosis and reduced VEGF-A expression and secretion.
- Tumors with LPPR5OE exhibited dysfunctional micro-vasculature, which was not effectively targeted by Sunitinib therapy.
Conclusions:
- LPPR5 overexpression promotes a more benign, pro-apoptotic glioma phenotype with delayed growth and aberrant vascular architecture.
- LPPR5 modulation represents a promising strategy for glioblastoma treatment, potentially overcoming therapeutic resistance.
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