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Mitochondrial alterations induced by serum amine oxidase and spermine on human multidrug resistant tumor cells
G Arancia1, A Calcabrini, M Marra
1Ultrastructures Laboratory, Istituto Superiore di Sanità, Rome, Italy.
Abstract:
Multidrug resistance (MDR) has been studied extensively because it is one of major problems in cancer chemotherapy. The MDR phenotype is often due to overexpression of P-glycoprotein (P-gp), that acting as an energy-dependent drug efflux pump exports various anticancer drugs out of cells. The major goal of our investigation is to establish whether bovine serum amine oxidase (BSAO), which generates the products H(2)O(2) and aldehyde(s), from the polyamine spermine, is able to overcome MDR of human cancer cells. The cytotoxicity of the products was evaluated in both drug-sensitive (LoVo WT) and drug-resistant (LoVo DX) colon adenocarcinoma cells. A clonogenic cell survival assay demonstrated that LoVo DX cells were more sensitive than LoVo WT cells. Exogenous catalase protected cells against cytotoxicity mainly due to the formation of H(2)O(2). However, spermine-derived aldehyde(s) still induced some cytotoxicity. The cytotoxic effect was totally inhibited in the presence of both enzymes, catalase and NAD-dependent aldehyde dehydrogenase (ALDH). Transmission electron microscopy investigations showed that BSAO and spermine induced evident mitochondria alterations, more pronounced in MDR than in LoVo WT cells. The mitochondrial activity was checked by flow cytometry studies, labelling cells with the probe JC1, that displayed a basal hyperpolarized status of the mitochondria in multidrug-resistant cells. After treatment with amine oxidase in the presence of polyamine-spermine, the cells showed a marked increase in mitochondrial membrane depolarization higher in LoVo DX than in LoVo WT cells. Our findings suggest that toxic oxidation products formed from spermine and BSAO could be a powerful tool in the development of new anticancer treatments, mainly against MDR tumor cells.
Insights
Bovine serum amine oxidase (BSAO) and spermine generate toxic products that show promise in overcoming multidrug resistance (MDR) in cancer cells by inducing mitochondrial damage and depolarization, particularly in MDR cells.
Area of Science:
- Biochemistry
- Cell Biology
- Oncology
Background:
- Multidrug resistance (MDR) is a significant challenge in cancer chemotherapy, often caused by P-glycoprotein (P-gp) efflux pumps.
- Developing strategies to overcome MDR is crucial for improving patient outcomes.
Purpose of the Study:
- To investigate if bovine serum amine oxidase (BSAO) and its spermine-derived products can overcome MDR in human colon cancer cells.
- To evaluate the cytotoxicity of BSAO and spermine on drug-sensitive (LoVo WT) and drug-resistant (LoVo DX) cells.
Main Methods:
- Clonogenic cell survival assays were used to assess cytotoxicity.
- The roles of hydrogen peroxide (H2O2) and aldehydes were investigated using catalase and aldehyde dehydrogenase (ALDH).
- Mitochondrial alterations and membrane potential were analyzed using transmission electron microscopy and JC-1 staining via flow cytometry.
Main Results:
- LoVo DX cells exhibited greater sensitivity to BSAO and spermine treatment than LoVo WT cells.
- Cytotoxicity was partly attributed to H2O2 and spermine-derived aldehydes.
- BSAO and spermine induced significant mitochondrial alterations and depolarization, more pronounced in MDR cells.
Conclusions:
- The toxic oxidation products of spermine generated by BSAO show potential as a novel therapeutic approach against MDR cancer cells.
- Targeting mitochondria with BSAO and spermine could be a viable strategy to combat multidrug resistance in cancer therapy.
