AMPK dysregulation promotes diabetes-related reduction of superoxide and mitochondrial function.

@article{Dugan2013AMPKDP,
  title={AMPK dysregulation promotes diabetes-related reduction of superoxide and mitochondrial function.},
  author={Laura l. Dugan and Young-Hyun You and Sameh S Ali and Maggie K. Diamond-Stanic and Satoshi Miyamoto and Anne-{\'E}milie Decl{\`e}ves and Aleksander Y. Andreyev and Tammy Quach and San Ly and Grigory Shekhtman and William H. Nguyen and Andre Chepetan and Thuy Phuong T. Le and Lin Wang and Ming Xu and Kacie P Paik and Agnes Fogo and Benoit Viollet and Anne {\'E}lisabeth Murphy and F. C. Iii Brosius and Robert K. Naviaux and Kumar Sharma},
  journal={The Journal of clinical investigation},
  year={2013},
  volume={123 11},
  pages={
          4888-99
        }
}
Diabetic microvascular complications have been considered to be mediated by a glucose-driven increase in mitochondrial superoxide anion production. Here, we report that superoxide production was reduced in the kidneys of a steptozotocin-induced mouse model of type 1 diabetes, as assessed by in vivo real-time transcutaneous fluorescence, confocal microscopy, and electron paramagnetic resonance analysis. Reduction of mitochondrial biogenesis and phosphorylation of pyruvate dehydrogenase (PDH… CONTINUE READING

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