Antioxidants (Nov 2022)

Therapeutic Effect of Curcumin on 5/6Nx Hypertriglyceridemia: Association with the Improvement of Renal Mitochondrial β-Oxidation and Lipid Metabolism in Kidney and Liver

  • Zeltzin Alejandra Ceja-Galicia,
  • Fernando Enrique García-Arroyo,
  • Omar Emiliano Aparicio-Trejo,
  • Mohammed El-Hafidi,
  • Guillermo Gonzaga-Sánchez,
  • Juan Carlos León-Contreras,
  • Rogelio Hernández-Pando,
  • Martha Guevara-Cruz,
  • Armando R. Tovar,
  • Pedro Rojas-Morales,
  • Ana Karina Aranda-Rivera,
  • Laura Gabriela Sánchez-Lozada,
  • Edilia Tapia,
  • José Pedraza-Chaverri

DOI
https://doi.org/10.3390/antiox11112195
Journal volume & issue
Vol. 11, no. 11
p. 2195

Abstract

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Chronic kidney disease (CKD) prevalence is constantly increasing, and dyslipidemia in this disease is characteristic, favoring cardiovascular events. However, the mechanisms of CKD dyslipidemia are not fully understood. The use of curcumin (CUR) in CKD models such as 5/6 nephrectomy (5/6Nx) has shown multiple beneficial effects, so it has been proposed to correct dyslipidemia without side effects. This work aimed to characterize CUR’s potential therapeutic effect on dyslipidemia and alterations in lipid metabolism and mitochondrial ß-oxidation in the liver and kidney in 5/6Nx. Male Wistar rats were subjected to 5/6Nx and progressed by 4 weeks; meanwhile, CUR (120 mg/kg) was administered for weeks 5 to 8. Our results showed that CUR reversed the increase in liver and kidney damage and hypertriglyceridemia induced by 5/6Nx. CUR also reversed mitochondrial membrane depolarization and β-oxidation disorders in the kidney and the increased lipid uptake and the high levels of proteins involved in fatty acid synthesis in the liver and kidney. CUR also decreased lipogenesis and increased mitochondrial biogenesis markers in the liver. Therefore, we concluded that the therapeutic effect of curcumin on 5/6Nx hypertriglyceridemia is associated with the restoration of renal mitochondrial ß-oxidation and the reduction in lipid synthesis and uptake in the kidneys and liver.

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