Selenium compounds exert their antioxidant activity mostly when the selenium atom is incorporated into selenoproteins. In our work, we tested the possibility that selenite itself interacts with thiols to form active species that have reducing properties. Therefore, we studied the reduction of 2-(4-carboxyphenyl)-4,5-dihydro-4,4,5,5-tetramethyl-1H-imidazol-1-yloxy-3-oxide radical ((â¢)cPTIO), damage of plasmid DNA (pDNA), modulation of rat hemodynamic parameters and tension of isolated arteries induced by products of interaction of selenite with thiols. We found that the products of selenite interaction with thiols had significant reducing properties that could be attributed mainly to the selenide and that selenite had catalytic properties in the access of thiols. The potency of thiols to reduce (â¢)cPTIO in the interaction with selenite was cysteineâ>âhomocysteineâ>âglutathione reducedâ>âN-acetylcysteine. Thiol/selenite products cleaved pDNA, with superoxide dismutase enhancing these effects suggesting a positive involvement of superoxide anion in the process. The observed (â¢)cPTIO reduction and pDNA cleavage were significantly lower when selenomethionine was used instead of selenite. The products of glutathione/selenite interaction affected several hemodynamic parameters including rat blood pressure decrease. Notably, the products relaxed isolated mesenteric artery, which may explain the observed decrease in rat blood pressure. In conclusion, we found that the thiol/selenite interaction products exhibited significant reducing properties which can be used in further studies of the treatment of pathological conditions caused by oxidative stress. The results of decreased rat blood pressure and the tension of mesenteric artery may be perspective in studies focused on cardiovascular disease and their prevention.
Products of Selenite/Thiols Interaction Have Reducing Properties, Cleave Plasmid DNA and Decrease Rat Blood Pressure and Tension of Rat Mesenteric Artery.
亚硒酸盐/硫醇相互作用的产物具有还原性,可裂解质粒DNA,降低大鼠血压和大鼠肠系膜动脉张力
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作者:Grman Marian, Balis Peter, Berenyiova Andrea, Svajdlenkova Helena, Tomasova Lenka, Cacanyiova Sona, Rostakova Zuzana, Waczulikova Iveta, Chovanec Miroslav, DomÃnguez-Ãlvarez Enrique, Ondrias Karol, Misak Anton
| 期刊: | Biological Trace Element Research | 影响因子: | 3.600 |
| 时间: | 2025 | 起止号: | 2025 Feb;203(2):903-929 |
| doi: | 10.1007/s12011-024-04196-3 | 种属: | Rat |
| 研究方向: | 其它 | ||
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