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Published on: November 20, 2012
Cannabidiol inhibits human glioma by induction of lethal mitophagy through activating TRPV4
Tengfei Huang1,2,3, Tianqi Xu1,2,3, Yangfan Wang4
1State Key Laboratory of Pharmaceutical Biotechnology, School of Life Sciences, Nanjing University, Nanjing, China.
Abstract:
Glioma is the most common primary malignant brain tumor with poor survival and limited therapeutic options. The non-psychoactive phytocannabinoid cannabidiol (CBD) has been shown to be effective against glioma; however, the molecular target and mechanism of action of CBD in glioma are poorly understood. Here we investigated the molecular mechanisms underlying the antitumor effect of CBD in preclinical models of human glioma. Our results showed that CBD induced autophagic rather than apoptotic cell death in glioma cells. We also showed that CBD induced mitochondrial dysfunction and lethal mitophagy arrest, leading to autophagic cell death. Mechanistically, calcium flux induced by CBD through TRPV4 (transient receptor potential cation channel subfamily V member 4) activation played a key role in mitophagy initiation. We further confirmed TRPV4 levels correlated with both tumor grade and poor survival in glioma patients. Transcriptome analysis and other results demonstrated that ER stress and the ATF4-DDIT3-TRIB3-AKT-MTOR axis downstream of TRPV4 were involved in CBD-induced mitophagy in glioma cells. Lastly, CBD and temozolomide combination therapy in patient-derived neurosphere cultures and mouse orthotopic models showed significant synergistic effect in both controlling tumor size and improving survival. Altogether, these findings showed for the first time that the antitumor effect of CBD in glioma is caused by lethal mitophagy and identified TRPV4 as a molecular target and potential biomarker of CBD in glioma. Given the low toxicity and high tolerability of CBD, we therefore propose CBD should be tested clinically for glioma, both alone and in combination with temozolomide.Abbreviations: 4-PBA: 4-phenylbutyrate; AKT: AKT serine/threonine kinase; ATF4: activating transcription factor 4; Baf-A1: bafilomycin A1; CANX: calnexin; CASP3: caspase 3; CAT: catalase; CBD: cannabidiol; CQ: chloroquine; DDIT3: DNA damage inducible transcript 3; ER: endoplasmic reticulum; GBM: glioblastoma multiforme; GFP: green fluorescent protein; MAP1LC3B/LC3B: microtubule associated protein 1 light chain 3 beta; MTOR: mechanistic target of rapamycin kinase; PARP1: poly(ADP-ribose) polymerase; PINK1: PTEN induced kinase 1; PRKN: parkin RBR E3 ubiquitin protein ligase; SLC8A1: solute carrier family 8 member A1; SQSTM1: sequestosome 1; TCGA: The cancer genome atlas; TEM: transmission electron microscopy; TMZ: temozolomide; TRIB3: tribbles pseudokinase 3; TRPC: transient receptor potential cation channel subfamily C; TRPV4: transient receptor potential cation channel subfamily V member 4.
Insights
Cannabidiol (CBD) triggers lethal mitophagy in glioma cells by activating TRPV4 channels, leading to cancer cell death. Combination therapy with temozolomide shows synergistic effects, suggesting clinical trials for glioma treatment.
Area of Science:
- Neuro-oncology
- Molecular Biology
- Pharmacology
Background:
- Glioma, a common brain tumor, has limited treatment options and poor prognosis.
- The anti-glioma effects of cannabidiol (CBD) are known, but its molecular targets remain unclear.
Purpose of the Study:
- To elucidate the molecular mechanisms of CBD's anti-glioma effects.
- To identify potential therapeutic targets and biomarkers for CBD in glioma treatment.
Main Methods:
- Preclinical glioma models (cell lines, patient-derived neurospheres, mouse orthotopic models).
- Analysis of cell death pathways (apoptosis vs. autophagy), mitochondrial function, and calcium signaling.
- TRPV4 expression analysis in patient tumors.
- Transcriptome analysis and pathway elucidation (ER stress, ATF4-DDIT3-TRIB3-AKT-MTOR axis).
- Combination therapy studies with temozolomide (TMZ).
Main Results:
- CBD induced autophagic cell death, not apoptosis, in glioma cells.
- CBD caused mitochondrial dysfunction and lethal mitophagy arrest via calcium flux through TRPV4.
- TRPV4 expression correlated with glioma grade and patient survival.
- CBD and TMZ demonstrated synergistic anti-tumor effects in preclinical models.
Conclusions:
- CBD exerts anti-glioma effects by inducing lethal mitophagy through TRPV4 activation.
- TRPV4 serves as a potential molecular target and biomarker for CBD therapy in glioma.
- Combination therapy with CBD and temozolomide warrants clinical investigation for glioma treatment due to synergistic efficacy and CBD's favorable toxicity profile.
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