Journal article

Nox-4 deletion reduces oxidative stress and injury by PKC-α-associated mechanisms in diabetic nephropathy

V Thallas-Bonke, JC Jha, SP Gray, D Barit, H Haller, HHHW Schmidt, MT Coughlan, ME Cooper, JM Forbes, KAM Jandeleit-Dahm

Physiological Reports | WILEY | Published : 2014

Open access

Abstract

Current treatments for diabetic nephropathy (DN) only result in slowing its progression, thus highlighting a need to identify novel targets. Increased production of reactive oxygen species (ROS) is considered a key downstream pathway of end-organ injury with increasing data implicating both mitochondrial and cytosolic sources of ROS. The enzyme, NADPH oxidase, generates ROS in the kidney and has been implicated in the activation of protein kinase C (PKC), in the pathogenesis of DN, but the link between PKC and Noxderived ROS has not been evaluated in detail in vivo. In this study, global deletion of a NADPH-oxidase isoform, Nox4, was examined in mice with streptozotocin-induced diabetes (C57..

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University of Melbourne Researchers

Grants

Awarded by Juvenile Diabetes Research Foundation International


Funding Acknowledgements

This work was supported, in part, by the Victorian Government's OIS Program, the Juvenile Diabetes Research Foundation, and the National Health and Medical Research Council of Australia. Dr Vicki Thallas-Bonke is a recipient of an Advanced Postdoctoral JDRF Fellowship.