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Published on: November 1, 2017
Doxyl Nitroxide Spin Probes Can Modify Toxicity of Doxorubicin towards Fibroblast Cells
Jan Czepas1, Karolina Matczak2, Aneta Koceva-Chyła2
1Department of Molecular Biophysics, Faculty of Biology and Environmental Protection, University of Łódź, 141/143 Pomorska st., 90-236 Łódź, Poland.
Abstract:
The biological properties of doxyl stearate nitroxides (DSs): 5-DS, Met-12-DS, and 16-DS, commonly used as spin probes, have not been explored in much detail so far. Furthermore, the influence of DSs on the cellular changes induced by the anticancer drug doxorubicin (DOX) has not yet been investigated. Therefore, we examined the cytotoxicity of DSs and their ability to induce cell death and to influence on fluidity and lipid peroxidation (LPO) in the plasma membrane of immortalised B14 fibroblasts, used as a model neoplastic cells, susceptible to DOX-induced changes. The influence of DSs on DOX toxicity was also investigated and compared with that of a natural reference antioxidant α-Tocopherol. By employing the trypan blue exclusion test and double fluorescent staining, we found a significant level of cytotoxicity for DSs and showed that their ability to induce apoptosis and modify plasma membrane fluidity (measured fluorimetrically) is more potent than for α-Tocopherol. The most cytotoxic nitroxide was 5-DS. The electron paramagnetic resonance (EPR) measurements revealed that 5-DS was reduced in B14 cells at the fastest and Met-12-DS at the slowest rate. In the presence of DOX, DSs were reduced slower than alone. The investigated compounds, administered with DOX, enhanced DOX-induced cell death and demonstrated concentration-dependent biphasic influence on membrane fluidity. A-Tocopherol showed weaker effects than DSs, regardless the mode of its application-alone or with DOX. High concentrations of α-Tocopherol and DSs decreased DOX-induced LPO. Substantial cytotoxicity of the DSs suggests that they should be used more carefully in the investigations performed on sensitive cells. Enhancement of DOX toxicity by DSs showed their potential to act as chemosensitizers of cancer cells to anthracycline chemotherapy.
Insights
Doxyl stearate nitroxides (DSs) show significant cytotoxicity and enhance anticancer drug doxorubicin (DOX) toxicity, suggesting potential as chemosensitizers for cancer therapy. Further research is needed due to their potent effects.
Area of Science:
- Biochemistry
- Cell Biology
- Pharmacology
Background:
- Doxyl stearate nitroxides (DSs) are spin probes with largely unexplored biological properties.
- The impact of DSs on cellular changes induced by doxorubicin (DOX), an anticancer drug, remains uninvestigated.
Purpose of the Study:
- To evaluate the cytotoxicity of DSs and their effects on cell death, plasma membrane fluidity, and lipid peroxidation (LPO).
- To investigate the influence of DSs on DOX-induced toxicity in B14 fibroblasts, comparing them with α-Tocopherol.
Main Methods:
- Cytotoxicity assessed using trypan blue exclusion and double fluorescent staining.
- Plasma membrane fluidity measured fluorimetrically.
- Electron paramagnetic resonance (EPR) used to determine DS reduction rates.
- Lipid peroxidation (LPO) levels analyzed.
Main Results:
- DSs exhibited significant cytotoxicity and induced apoptosis more potently than α-Tocopherol.
- DSs enhanced DOX-induced cell death and modulated membrane fluidity in a concentration-dependent manner.
- 5-DS showed the highest cytotoxicity and fastest reduction rate in B14 cells.
Conclusions:
- DSs possess substantial cytotoxicity, necessitating cautious use in sensitive cell studies.
- DSs can act as chemosensitizers, enhancing cancer cell sensitivity to anthracycline chemotherapy.
- The findings highlight the potential of DSs in cancer therapy, alongside a need for careful application.

