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Redox-Cycling "Mitocans" as Effective New Developments in Anticancer Therapy.
Bakalova, Rumiana; Lazarova, Dessislava; Sumiyoshi, Akira; Shibata, Sayaka; Zhelev, Zhivko; Nikolova, Biliana; Semkova, Severina; Vlaykova, Tatyana; Aoki, Ichio; Higashi, Tatsuya.
Afiliação
  • Bakalova R; Department of Molecular Imaging and Theranostics, National Institutes for Quantum Science and Technology (QST), Chiba 263-8555, Japan.
  • Lazarova D; Faculty of Medicine, Sofia University, St. Kliment Ohridski, 1407 Sofia, Bulgaria.
  • Sumiyoshi A; Faculty of Medicine, Sofia University, St. Kliment Ohridski, 1407 Sofia, Bulgaria.
  • Shibata S; Department of Molecular Imaging and Theranostics, National Institutes for Quantum Science and Technology (QST), Chiba 263-8555, Japan.
  • Zhelev Z; Department of Molecular Imaging and Theranostics, National Institutes for Quantum Science and Technology (QST), Chiba 263-8555, Japan.
  • Nikolova B; Faculty of Medicine, Trakia University, 6000 Stara Zagora, Bulgaria.
  • Semkova S; Institute of Biophysics and Biomedical Engineering, Bulgarian Academy of Sciences, 1113 Sofia, Bulgaria.
  • Vlaykova T; Institute of Biophysics and Biomedical Engineering, Bulgarian Academy of Sciences, 1113 Sofia, Bulgaria.
  • Aoki I; Institute of Biophysics and Biomedical Engineering, Bulgarian Academy of Sciences, 1113 Sofia, Bulgaria.
  • Higashi T; Faculty of Medicine, Trakia University, 6000 Stara Zagora, Bulgaria.
Int J Mol Sci ; 24(9)2023 May 08.
Article em En | MEDLINE | ID: mdl-37176145
Our study proposes a pharmacological strategy to target cancerous mitochondria via redox-cycling "mitocans" such as quinone/ascorbate (Q/A) redox-pairs, which makes cancer cells fragile and sensitive without adverse effects on normal cells and tissues. Eleven Q/A redox-pairs were tested on cultured cells and cancer-bearing mice. The following parameters were analyzed: cell proliferation/viability, mitochondrial superoxide, steady-state ATP, tissue redox-state, tumor-associated NADH oxidase (tNOX) expression, tumor growth, and survival. Q/A redox-pairs containing unprenylated quinones exhibited strong dose-dependent antiproliferative and cytotoxic effects on cancer cells, accompanied by overproduction of mitochondrial superoxide and accelerated ATP depletion. In normal cells, the same redox-pairs did not significantly affect the viability and energy homeostasis, but induced mild mitochondrial oxidative stress, which is well tolerated. Benzoquinone/ascorbate redox-pairs were more effective than naphthoquinone/ascorbate, with coenzyme Q0/ascorbate exhibiting the most pronounced anticancer effects in vitro and in vivo. Targeted anticancer effects of Q/A redox-pairs and their tolerance to normal cells and tissues are attributed to: (i) downregulation of quinone prenylation in cancer, leading to increased mitochondrial production of semiquinone and, consequently, superoxide; (ii) specific and accelerated redox-cycling of unprenylated quinones and ascorbate mainly in the impaired cancerous mitochondria due to their redox imbalance; and (iii) downregulation of tNOX.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Superóxidos / Neoplasias Limite: Animals Idioma: En Ano de publicação: 2023 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Superóxidos / Neoplasias Limite: Animals Idioma: En Ano de publicação: 2023 Tipo de documento: Article