The protective effect of alpha-tocopherol against dichromate-induced renal tight junction damage is mediated via

Laura Arreola-Mendoza1, Luz M Del Razo, Maria E Mendoza-Garrido

  • 1Toxicology Dept, Centre for Research and Advanced Studies, National Polytechnic Institute (Cinvestav-IPN), Av. Instituto Politécnico Nacional #2508, Col. San Pedro Zacatenco, México DF, 07360, Mexico.

Toxicology Letters
|September 22, 2009
PubMed

Insights

Acute renal failure (ARF) damages renal tight junctions (TJ) by altering occludin and claudin-2 proteins. The antioxidant alpha-tocopherol (alpha-TOC) protects TJ integrity and kidney function against dichromate-induced oxidative damage.

Area of Science:

  • Nephrology
  • Cell Biology
  • Toxicology

Background:

  • Renal tight junctions (TJ) are crucial for regulating paracellular transport in the kidney.
  • Oxidative damage is implicated in acute renal failure (ARF), potentially affecting TJ proteins.

Purpose of the Study:

  • To investigate the impact of dichromate (Cr(6+))-induced ARF on TJ proteins (occludin, claudin-2) and the role of ERK1/2 signaling.
  • To evaluate the protective effects of alpha-tocopherol (alpha-TOC) against Cr(6+)-induced TJ damage.

Main Methods:

  • Induction of ARF in Wistar rats using potassium dichromate (Cr(6+)) with or without alpha-TOC co-administration.
  • Assessment of oxidative damage (lipid peroxidation), proximal tubule function (fractional excretions), and TJ protein expression/localization (immunofluorescence, Western blot).

Main Results:

  • Cr(6+)-induced ARF led to increased sodium and glucose excretion, elevated occludin levels, and mislocalized claudin-2.
  • Evidence of occludin hyperphosphorylation was observed in Cr(6+)-treated rats.
  • Alpha-TOC treatment reduced oxidative damage, improved kidney function, and preserved TJ structure and expression.

Conclusions:

  • Dichromate-induced ARF disrupts renal TJ proteins occludin and claudin-2.
  • Alpha-tocopherol demonstrates a protective effect on TJ structure and function during oxidative stress.
  • ERK1/2 signaling pathways may be involved in the antioxidant-mediated protection of TJs.

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