[Influence of the dense extract from herb of Primula veris L. On the oxidative stress development and the functional state of the cardiomyocytes mitochondria of rats with experimental chronic heart failure]. / Vliianie gustogo ékstrakta iz travy pervotsveta vesennego na razvitie oksidativnogo stressa i funktsional'noe sostoianie mitokhondrii kardiomiotsitov krys s éksperimental'noi khronicheskoi serdechnoi nedostatochnost'iu.
Biomed Khim
; 64(4): 334-343, 2018 Aug.
Article
em Ru
| MEDLINE
| ID: mdl-30135280
Experimental chronic heart failure (CHF), caused by administration of L-isoproterenol (2.5 mg/kg twice a day intraperitoneally for 21 days), promotes uncoupling of respiration and oxidative phosphorylation. The rate of mitochondrial oxygen consumption in the metabolic state V3 by Chance in animals with CHF decreased by 53.3% (p<0.05) with malate using (as an oxidation substrate feeding Ñomplex I of the electron transport chain (ETC)), by 70.6% (p<0.05) with succinate using (Ñomplex II substrate) and by 63.6% (p<0.05) when malate and succinate were added simultaneously. The respiratory control ratio significantly decreased 2.3 times for Ñomplex I, 2.5 for Ñomplex II, and 2.6 times for the simultaneous operation of two respiratory chain complexes in mitochondria of CHF rats compared to intact animals. Mitochondrial dysfunction in experimental CHF is evidently due to the development of oxidative stress. It was revealed that the content of malonic dialdehyde (MDA) in the group of rats with experimental CHF was higher by 54.7% (p<0.05), as compared with intact animals. The activity of superoxide dismutase (SOD) and catalase was lower by 17.5% (p<0.05), and by 18.4%, respectively than in the intact group. The dense extract from herba of Primula veris L. (DEHPV) 30 mg/kg limits the development of mitochondrial dysfunction in rats with experimental CHF, as evidenced by an increase in the role of V3 respiration for the first and second respiratory chain complexes in 1.7 (p<0.05) and 2.0 times (p<0.05), respectively, the ratio of respiratory control (RCR) - 1.7 times (p<0.05) for Ñomplex I and 2 times (p<0.05) for Ñomplex II compared with the negative control. The concentration of MDA was by 15.7% (p<0.05), lower and the activity of SOD was by 56.3% (p<0.05) higher.
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Texto completo:
1
Bases de dados:
MEDLINE
Assunto principal:
Extratos Vegetais
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Estresse Oxidativo
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Miócitos Cardíacos
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Primula
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Insuficiência Cardíaca
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Mitocôndrias Cardíacas
Limite:
Animals
Idioma:
Ru
Revista:
Biomed Khim
Ano de publicação:
2018
Tipo de documento:
Article
País de afiliação:
Federação Russa