Effects of dinuclear berenil-platinum(II) complexes on fibroblasts redox status

Abstract

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.