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Updated: Apr 12, 2026

Analytical Determination of Mitochondrial Function of Excised Solid Tumor Homogenates
Published on: August 6, 2021
Mitochondrially targeted vitamin E succinate efficiently kills breast tumour-initiating cells in a complex
Bing Yan1, Marina Stantic2, Renata Zobalova3,4
1School of Medical Science, Griffith University, Southport, Qld, 4222, Australia. bing.yan@griffithuni.edu.au.
Background:
Accumulating evidence suggests that breast cancer involves tumour-initiating cells (TICs), which play a role in initiation, metastasis, therapeutic resistance and relapse of the disease. Emerging drugs that target TICs are becoming a focus of contemporary research. Mitocans, a group of compounds that induce apoptosis of cancer cells by destabilising their mitochondria, are showing their potential in killing TICs. In this project, we investigated mitochondrially targeted vitamin E succinate (MitoVES), a recently developed mitocan, for its in vitro and in vivo efficacy against TICs.
Methods:
The mammosphere model of breast TICs was established by culturing murine NeuTL and human MCF7 cells as spheres. This model was verified by stem cell marker expression, tumour initiation capacity and chemotherapeutic resistance. Cell susceptibility to MitoVES was assessed and the cell death pathway investigated. In vivo efficacy was studied by grafting NeuTL TICs to form syngeneic tumours.
Results:
Mammospheres derived from NeuTL and MCF7 breast cancer cells were enriched in the level of stemness, and the sphere cells featured altered mitochondrial function. Sphere cultures were resistant to several established anti-cancer agents while they were susceptible to MitoVES. Killing of mammospheres was suppressed when the mitochondrial complex II, the molecular target of MitoVES, was knocked down. Importantly, MitoVES inhibited progression of syngeneic HER2(high) tumours derived from breast TICs by inducing apoptosis in tumour cells.
Conclusions:
These results demonstrate that using mammospheres, a plausible model for studying TICs, drugs that target mitochondria efficiently kill breast tumour-initiating cells.
Insights
Mitochondrially targeted vitamin E succinate (MitoVES) effectively kills breast cancer tumor-initiating cells (TICs) in vitro and in vivo. This novel mitocan shows promise for targeting drug-resistant breast cancer stem cells.
Area of Science:
- Oncology
- Cancer Stem Cell Biology
- Mitochondrial Medicine
Background:
- Breast cancer progression, metastasis, and relapse are driven by tumor-initiating cells (TICs).
- Targeting TICs is a critical strategy for developing novel breast cancer therapies.
- Mitocans, compounds inducing apoptosis via mitochondrial destabilization, show potential for TIC eradication.
Purpose of the Study:
- To investigate the efficacy of mitochondrially targeted vitamin E succinate (MitoVES) against breast cancer TICs.
- To evaluate MitoVES's in vitro and in vivo anti-TIC activity.
Main Methods:
- Established a mammosphere model using murine NeuTL and human MCF7 breast cancer cells to represent TICs.
- Assessed sphere cell stemness, mitochondrial function, and resistance to conventional agents and MitoVES.
- Investigated MitoVES's mechanism of action by targeting mitochondrial complex II.
- Evaluated in vivo efficacy using syngeneic tumor models derived from NeuTL TICs.
Main Results:
- Mammospheres exhibited stemness enrichment and altered mitochondrial function, conferring resistance to standard therapies but susceptibility to MitoVES.
- MitoVES-induced cell death was dependent on mitochondrial complex II activity.
- MitoVES significantly inhibited the progression of HER2(high) tumors derived from breast TICs by inducing apoptosis.
Conclusions:
- The mammosphere model is a viable platform for studying breast cancer TICs.
- MitoVES demonstrates potent efficacy in eliminating breast cancer TICs.
- Mitochondria-targeted drugs represent a promising therapeutic avenue for overcoming breast cancer stem cell resistance.
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