4.7 Article

Alterations in mitochondrial homeostasis in a potassium dichromate model of acute kidney injury and their mitigation by curcumin

Journal

FOOD AND CHEMICAL TOXICOLOGY
Volume 145, Issue -, Pages -

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.fct.2020.111774

Keywords

Nephrotoxicity; Potassium dichromate; Curcumin; Mitochondrial biogenesis; Mitochondrial dynamics; Mitochondrial homeostasis

Funding

  1. Programa de Apoyo a Proyectos de Investigacion e Innovacion Tecnologica (PAPIIT), Direccion General de Asuntos del Personal Academico, Universidad Nacional Autonoma de Mexico (UNAM) [IN202219]
  2. Programa de Apoyo a la Investigacion y al Posgrado (PAIP), UNAM [5000-9105]
  3. Consejo Nacional de Ciencia y Tecnologia (CONACYT) [281967]
  4. Fondos del Gasto Directo Autorizado a la Subdireccion de Investigacion Basica from Instituto Nacional de Cardiologia Ignacio Chavez
  5. CONACyT
  6. Posgrado en Ciencias Biologicas (UNAM)

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y Curcumin has protective effects in several acute kidney injury models, including that induced by potassium dichromate (K2Cr2O7). The protective effect of curcumin in this experimental model has been associated to the preservation of mitochondrial bioenergetics. This study is aimed at evaluating whether or not curcumin's protective effect in mitochondrial bioenergetics is related to the modulation of mitochondrial dynamics and biogenesis. Wistar rats were treated with a single subcutaneous dose of K2Cr2O7 (12.5 mg/kg) or received curcumin (400 mg/kg/day) by oral gavage 10 days before and one day after the K2Cr2O7 injection. K2Cr2O7 induced kidney dysfunction and increased mitochondrial hydrogen peroxide production, while decreasing the respiration directly attributable to oxidative phosphorylation and mitochondrial membrane potential. In mitochondria, K2Cr2O7 increased fission and reduced fusion. Structural analysis of mitochondria in the proximal tubular cells corroborated their fragmentation and loss of crests' integrity. Regarding mitochondrial biogenesis, K2Cr2O7 decreased peroxisome proliferator-activated receptor gamma coactivator 1-alpha (PGC-1 alpha) levels. Conversely, curcumin treatment mitigated the aforementioned alterations and increased the expression of the mitochondrial transcription factor A (TFAM). Taken together, our results suggest that curcumin can protect against renal injury by modulating mitochondrial homeostasis, mitigating alterations in bioenergetics and dynamics, possibly by stimulating mitochondrial biogenesis.

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