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Effects of dinuclear berenil-platinum(II) complexes on fibroblasts redox status
Purpose:
Platinum(II) complex anticarcinogenic mechanisms are associated with changes in the cellular redox status of cancer as well as healthy cells. Therefore, the goal of the present study was to investigate oxidative modifications in cellular components following fibroblast exposure to novel dinuclear berenil-platinum(II) complexes.
Material And Method:
ROS levels, antioxidant parameters level/activity, and damage to DNA, lipids, and proteins, including pro-apoptotic and anti-apoptotic factors in human skin fibroblasts following berenil-platinum(II) complex treatments i.e. Pt2(isopropylamine)4(berenil)2, Pt2(piperazine)4(berenil)4, Pt2(2-picoline)4(berenil)2, Pt2(3-picoline)4(berenil)2, and Pt2(4- picoline)4(berenil)2 were examined.
Results:
Treatment of fibroblasts with platinum(II) complexes has shown that all compounds enhance total ROS and superoxide anion generation as well as change the activity of antioxidant enzymes such as superoxide dismutase, catalase, glutathione peroxidase and glutathione reductase and decrease in the level of non-enzymatic antioxidants (GSH, vitamin C, E and A). Such a situation is conducive to oxidative stress formation and oxidative modifications of cellular macromolecules and to increase in the expression of proapoptotic proteins. Pt2(isopropylamine)4(berenil)2 elicited the most damage, which resulted in oxidative modification of cellular components. The therapeutic use of this complex would cause considerable side effects in patients, therefore the agent lacks drug potential; however Pt2(piperazine)4(berenil)2 and Pt2(2-picoline)4(berenil)2 exhibited reduced redox and increased apoptotic profiles compared to cisplatin.
Conclusion:
Results of this paper and preliminary data show that Pt2(2-picoline)4(berenil)2 is less dangers than cisplatin to fibroblasts and more disruptive than cisplatin to breast cancer cell metabolism, and therefore it is a promising candidate for use in future anticancer drug strategies.
Insights
Novel platinum(II) complexes induce oxidative stress and DNA damage in fibroblasts. Pt2(2-picoline)4(berenil)2 shows promise as a less toxic anticancer agent compared to cisplatin.
Area of Science:
- Biochemistry
- Cell Biology
- Pharmacology
Background:
- Platinum(II) complexes are used in cancer therapy.
- Their mechanisms involve altering cellular redox status.
- Understanding these effects on healthy cells is crucial for drug development.
Purpose of the Study:
- To investigate oxidative modifications in cellular components of human skin fibroblasts.
- To evaluate novel dinuclear berenil-platinum(II) complexes for their impact on redox balance and cellular damage.
- To compare the effects of these complexes with cisplatin.
Main Methods:
- Fibroblasts were treated with various dinuclear berenil-platinum(II) complexes.
- Reactive oxygen species (ROS) levels and antioxidant parameters were measured.
- Damage to DNA, lipids, and proteins was assessed.
- Expression of pro-apoptotic and anti-apoptotic factors was analyzed.
Main Results:
- All platinum(II) complexes increased ROS generation and altered antioxidant enzyme activity.
- Non-enzymatic antioxidants decreased, leading to oxidative stress and macromolecular damage.
- Pt2(isopropylamine)4(berenil)2 caused the most significant damage.
- Pt2(piperazine)4(berenil)2 and Pt2(2-picoline)4(berenil)2 showed reduced redox effects and increased apoptosis compared to cisplatin.
Conclusions:
- Pt2(2-picoline)4(berenil)2 is less toxic to fibroblasts than cisplatin.
- This complex demonstrates greater disruption of breast cancer cell metabolism than cisplatin.
- Pt2(2-picoline)4(berenil)2 is a promising candidate for future anticancer drug development.
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