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Updated: Jul 24, 2025

Evaluating the Role of Mitochondrial Function in Cancer-related Fatigue
Published on: May 17, 2018
Viability of HepG2 and MCF-7 cells is not correlated with mitochondrial bioenergetics
Judit Doczi1, Noemi Karnok1, David Bui1
1Institute of Biochemistry and Molecular Biology, Department of Biochemistry, Semmelweis University, Budapest, 1094, Hungary.
Abstract:
Alterations in metabolism are a hallmark of cancer. It is unclear if oxidative phosphorylation (OXPHOS) is necessary for tumour cell survival. In this study, we investigated the effects of severe hypoxia, site-specific inhibition of respiratory chain (RC) components, and uncouplers on necrotic and apoptotic markers in 2D-cultured HepG2 and MCF-7 tumour cells. Comparable respiratory complex activities were observed in both cell lines. However, HepG2 cells exhibited significantly higher oxygen consumption rates (OCR) and respiratory capacity than MCF-7 cells. Significant non-mitochondrial OCR was observed in MCF-7 cells, which was insensitive to acute combined inhibition of complexes I and III. Pre-treatment of either cell line with RC inhibitors for 24-72 h resulted in the complete abolition of respective complex activities and OCRs. This was accompanied by a time-dependent decrease in citrate synthase activity, suggesting mitophagy. High-content automated microscopy recordings revealed that the viability of HepG2 cells was mostly unaffected by any pharmacological treatment or severe hypoxia. In contrast, the viability of MCF-7 cells was strongly affected by inhibition of complex IV (CIV) or complex V (CV), severe hypoxia, and uncoupling. However, it was only moderately affected by inhibition of complexes I, II, and III. Cell death in MCF-7 cells induced by inhibition of complexes II, III, and IV was partially abrogated by aspartate. These findings indicate that OXPHOS activity and viability are not correlated in these cell lines, suggesting that the connection between OXPHOS and cancer cell survival is dependent on the specific cell type and conditions.
Insights
Cancer cell survival does not always depend on oxidative phosphorylation (OXPHOS). This study found that inhibiting OXPHOS had different effects on cancer cell viability depending on the cell type and specific conditions.
Area of Science:
- Biochemistry
- Cell Biology
- Cancer Research
Background:
- Metabolic alterations are characteristic of cancer.
- The necessity of oxidative phosphorylation (OXPHOS) for tumor cell survival remains unclear.
Purpose of the Study:
- To investigate the impact of severe hypoxia, respiratory chain (RC) component inhibition, and uncouplers on cancer cell viability.
- To determine if OXPHOS is essential for tumor cell survival.
Main Methods:
- Utilized 2D-cultured HepG2 and MCF-7 tumor cells.
- Assessed necrotic and apoptotic markers under various conditions including severe hypoxia and pharmacological inhibition of RC components.
- Employed high-content automated microscopy for viability assessment.
Main Results:
- HepG2 cells showed higher oxygen consumption rates (OCR) and respiratory capacity than MCF-7 cells.
- MCF-7 cell viability was significantly impacted by inhibition of complex IV (CIV) or complex V (CV), severe hypoxia, and uncoupling.
- HepG2 cell viability was largely unaffected by the tested treatments and hypoxia.
Conclusions:
- OXPHOS activity and cancer cell viability are not directly correlated.
- The relationship between OXPHOS and cancer cell survival is cell-type and condition-dependent.

