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Published on: September 13, 2022
Lipoprotein Deprivation Reveals a Cholesterol-Dependent Therapeutic Vulnerability in Diffuse Glioma Metabolism
James Wood1, Salah Abdelrazig2, Sergey Evseev2
1Children's Brain Tumour Research Centre, School of Medicine, Biodiscovery Institute, University of Nottingham, Nottingham NG7 2RD, UK.
Abstract:
Poor outcomes associated with diffuse high-grade gliomas occur in both adults and children, despite substantial progress made in the molecular characterisation of the disease. Targeting the metabolic requirements of cancer cells represents an alternative therapeutic strategy to overcome the redundancy associated with cell signalling. Cholesterol is an integral component of cell membranes and is required by cancer cells to maintain growth and may also drive transformation. Here, we show that removal of exogenous cholesterol in the form of lipoproteins from culture medium was detrimental to the growth of two paediatric diffuse glioma cell lines, KNS42 and SF188, in association with S-phase elongation and a transcriptomic program, indicating dysregulated cholesterol homeostasis. Interrogation of metabolic perturbations under lipoprotein-deficient conditions revealed a reduced abundance of taurine-related metabolites and cholesterol ester species. Pharmacological reduction in intracellular cholesterol via decreased uptake and increased export was simulated using the liver X receptor agonist LXR-623, which reduced cellular viability in both adult and paediatric models of diffuse glioma, although the mechanism appeared to be cholesterol-independent in the latter. These results provide proof-of-principle for further assessment of liver X receptor agonists in paediatric diffuse glioma to complement the currently approved therapeutic regimens and expand the options available to clinicians to treat this highly debilitating disease.
Insights
Targeting cholesterol metabolism hinders diffuse glioma growth in children. Liver X receptor agonists show promise for treating this debilitating pediatric brain cancer.
Area of Science:
- Oncology
- Metabolic pathways
- Cell biology
Background:
- Diffuse high-grade gliomas (DHG) have poor outcomes in children and adults.
- Targeting cancer cell metabolism offers a therapeutic strategy.
- Cholesterol is crucial for cancer cell growth and transformation.
Purpose of the Study:
- To investigate the impact of exogenous cholesterol deprivation on pediatric diffuse glioma cell lines.
- To evaluate the efficacy of pharmacological cholesterol reduction using liver X receptor (LXR) agonists in adult and pediatric diffuse glioma models.
Main Methods:
- Culturing pediatric diffuse glioma cell lines (KNS42, SF188) in lipoprotein-deficient medium.
- Analyzing metabolic perturbations and transcriptomic changes.
- Treating adult and pediatric diffuse glioma models with LXR-623.
Main Results:
- Cholesterol deprivation impaired pediatric glioma cell growth, causing S-phase arrest and altered cholesterol homeostasis.
- Lipoprotein-deficient conditions led to reduced taurine and cholesterol ester metabolites.
- LXR-623 reduced cellular viability in both adult and pediatric diffuse glioma models, with a cholesterol-independent mechanism in pediatric models.
Conclusions:
- Cholesterol metabolism is a viable target for diffuse glioma therapy.
- LXR agonists represent a potential therapeutic strategy for pediatric diffuse glioma, complementing existing treatments.
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