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Updated: Jun 20, 2025

Author Spotlight: Transmitochondrial Cybrid Generation Using Cancer Cell Lines
Published on: March 17, 2023
Mitochondrial inhibitors: a new horizon in breast cancer therapy
Yalan Yan1, Sijie Li2, Lanqian Su1
1Clinical Medical College, Southwest Medical University, Luzhou, China.
Abstract:
Breast cancer, due to resistance to standard therapies such as endocrine therapy, anti-HER2 therapy and chemotherapy, continues to pose a major health challenge. A growing body of research emphasizes the heterogeneity and plasticity of metabolism in breast cancer. Because differences in subtypes exhibit a bias toward metabolic pathways, targeting mitochondrial inhibitors shows great potential as stand-alone or adjuvant cancer therapies. Multiple therapeutic candidates are currently in various stages of preclinical studies and clinical openings. However, specific inhibitors have been shown to face multiple challenges (e.g., single metabolic therapies, mitochondrial structure and enzymes, etc.), and combining with standard therapies or targeting multiple metabolic pathways may be necessary. In this paper, we review the critical role of mitochondrial metabolic functions, including oxidative phosphorylation (OXPHOS), the tricarboxylic acid cycle, and fatty acid and amino acid metabolism, in metabolic reprogramming of breast cancer cells. In addition, we outline the impact of mitochondrial dysfunction on metabolic pathways in different subtypes of breast cancer and mitochondrial inhibitors targeting different metabolic pathways, aiming to provide additional ideas for the development of mitochondrial inhibitors and to improve the efficacy of existing therapies for breast cancer.
Insights
Targeting mitochondrial metabolism offers promising breast cancer therapies. Combining mitochondrial inhibitors with standard treatments or targeting multiple pathways may overcome resistance and improve efficacy.
Area of Science:
- Oncology
- Cellular Metabolism
- Biochemistry
Background:
- Breast cancer poses a significant health challenge due to resistance to standard treatments.
- Metabolic heterogeneity and plasticity are key features of breast cancer.
- Mitochondrial metabolism is increasingly recognized as a critical factor in cancer progression.
Purpose of the Study:
- To review the role of mitochondrial metabolic functions in breast cancer.
- To outline the impact of mitochondrial dysfunction across breast cancer subtypes.
- To discuss mitochondrial inhibitors as potential therapeutic strategies.
Main Methods:
- Literature review of mitochondrial metabolic pathways in breast cancer.
- Analysis of metabolic reprogramming in different breast cancer subtypes.
- Evaluation of current and potential mitochondrial inhibitors.
Main Results:
- Mitochondrial functions like OXPHOS and metabolic pathways are crucial in breast cancer.
- Mitochondrial dysfunction affects metabolic pathways differently across breast cancer subtypes.
- Targeting mitochondrial inhibitors shows potential for monotherapy or adjuvant therapy.
Conclusions:
- Mitochondrial metabolism is a viable target for breast cancer treatment.
- Overcoming challenges requires combination therapies or targeting multiple metabolic pathways.
- Further development of mitochondrial inhibitors could enhance breast cancer therapy efficacy.
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