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Updated: Jul 23, 2025

Author Spotlight: Transmitochondrial Cybrid Generation Using Cancer Cell Lines
Published on: March 17, 2023
Mitochondria Deregulations in Cancer Offer Several Potential Targets of Therapeutic Interventions
Clara Musicco1, Anna Signorile2, Vito Pesce3
1Institute of Biomembranes, Bioenergetics and Molecular Biotechnologies (IBIOM), CNR, 70126 Bari, Italy.
Abstract:
Mitochondria play a key role in cancer and their involvement is not limited to the production of ATP only. Mitochondria also produce reactive oxygen species and building blocks to sustain rapid cell proliferation; thus, the deregulation of mitochondrial function is associated with cancer disease development and progression. In cancer cells, a metabolic reprogramming takes place through a different modulation of the mitochondrial metabolic pathways, including oxidative phosphorylation, fatty acid oxidation, the Krebs cycle, glutamine and heme metabolism. Alterations of mitochondrial homeostasis, in particular, of mitochondrial biogenesis, mitophagy, dynamics, redox balance, and protein homeostasis, were also observed in cancer cells. The use of drugs acting on mitochondrial destabilization may represent a promising therapeutic approach in tumors in which mitochondrial respiration is the predominant energy source. In this review, we summarize the main mitochondrial features and metabolic pathways altered in cancer cells, moreover, we present the best known drugs that, by acting on mitochondrial homeostasis and metabolic pathways, may induce mitochondrial alterations and cancer cell death. In addition, new strategies that induce mitochondrial damage, such as photodynamic, photothermal and chemodynamic therapies, and the development of nanoformulations that specifically target drugs in mitochondria are also described. Thus, mitochondria-targeted drugs may open new frontiers to a tailored and personalized cancer therapy.
Insights
Mitochondria are crucial in cancer, impacting cell proliferation and progression. Targeting mitochondrial function with novel drugs and therapies offers a promising avenue for personalized cancer treatment.
Area of Science:
- Oncology
- Cell Biology
- Biochemistry
Background:
- Mitochondria are central to cancer development, beyond ATP production.
- Mitochondrial dysfunction, including metabolic reprogramming and homeostasis alterations, is linked to cancer progression.
Purpose of the Study:
- To review altered mitochondrial features and metabolic pathways in cancer cells.
- To present drugs and novel strategies targeting mitochondrial homeostasis for cancer therapy.
Main Methods:
- Review of scientific literature on mitochondrial alterations in cancer.
- Analysis of therapeutic strategies targeting mitochondrial function.
Main Results:
- Cancer cells exhibit metabolic reprogramming and altered mitochondrial homeostasis.
- Drugs and therapies like photodynamic, photothermal, and chemodynamic approaches can induce cancer cell death by targeting mitochondria.
Conclusions:
- Mitochondria-targeted drugs and therapies represent a promising frontier for personalized cancer treatment.
- Targeting mitochondrial pathways offers new strategies for effective cancer therapy.
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