2024
DOI: 10.1371/journal.pone.0296775
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Ameliorating impact of coenzyme Q10 on the profile of adipokines, cardiomyopathy, and hematological markers correlated with the glucotoxicity sequelae in diabetic rats

Yousif Jameel Jbrael,
Badraldin Kareem Hamad

Abstract: Background In diabetes, high blood glucose induces glucotoxicity, resulting in the further damage of pancreatic beta-cells and then precipitating diabetic complications. This study was aimed to investigate the relationship between glucotoxicity with the level of adipokines, diabetic cardiomyopathy, and hematological markers. Moreover, the study examined the potential modulatory effect of coenzyme Q10 (CoQ10) on the aforementioned markers associated with the sequelae of diabetes mellitus. Material and methods… Show more

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Cited by 3 publications
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“…Coenzyme Q10 is an essential cofactor for ATP production in the respiratory chain. In trials on rats, it lowers blood glucose levels and directly and indirectly affects the oxidative stress as it neutralises and scavenges ROS and decreases NF-κB stimulation resulting in lowering proinflammatory factors, such as TNF-α [125,126]. It also ameliorates collagen deposition in the myocardium, thus reducing cardiac fibrosis.…”
Section: Modern and Possibly Effective Treatmentsmentioning
confidence: 99%
“…Coenzyme Q10 is an essential cofactor for ATP production in the respiratory chain. In trials on rats, it lowers blood glucose levels and directly and indirectly affects the oxidative stress as it neutralises and scavenges ROS and decreases NF-κB stimulation resulting in lowering proinflammatory factors, such as TNF-α [125,126]. It also ameliorates collagen deposition in the myocardium, thus reducing cardiac fibrosis.…”
Section: Modern and Possibly Effective Treatmentsmentioning
confidence: 99%