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Roderick Tan Lab of Youhua Liu Departments of Medicine and Pathology October 24, 2013 EXTRACELLULAR SUPEROXIDE DISMUTASE IN KIDNEY DISEASE.

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Presentation on theme: "Roderick Tan Lab of Youhua Liu Departments of Medicine and Pathology October 24, 2013 EXTRACELLULAR SUPEROXIDE DISMUTASE IN KIDNEY DISEASE."— Presentation transcript:

1 Roderick Tan Lab of Youhua Liu Departments of Medicine and Pathology October 24, 2013 EXTRACELLULAR SUPEROXIDE DISMUTASE IN KIDNEY DISEASE

2 OUTLINE Oxidative Stress in Renal Fibrosis Introduction to EC-SOD Role of EC-SOD in Adriamycin Injury Association with Wnt/beta-catenin signaling

3 DEVELOPMENT OF RENAL FIBROSIS Liu, Nat Rev Neph 2011

4 OXIDATIVE STRESS (OS) ROS Antioxidants

5 OXIDATIVE STRESS (OS) ROS Antioxidants Inflammation Angiotensin II NADPH oxidases SOD, Catalase, Glutathione peroxidase

6 EXTRACELLULAR SUPEROXIDE DISMUTASE (EC-SOD) 1 of 3 isoforms of SOD Antioxidant enzyme High expression in normal kidney Folz et al., AJRCMB 1997

7 O 2 - + O 2 - O 2 + H 2 O 2 2H + EC-SOD K ~ 1 x 10 9 Molecular Oxygen (O 2 ) Superoxide (O 2 - ) O ׃׃׃ ׃׃ ●●● O = O ׃ ׃ ׃ ׃ -

8 Inflammatory Cells Activated Fibroblasts, Epithelium, Endothelium O2●-O2●- EC-SOD prevents superoxide from forming potent reactive oxygen species + NO ● ONOO - HO ● NO 2 Fe 3+ Fe 2+ H202H202 HO ● EC-SOD Cell and tissue damage, signaling cascades, aging, etc.

9 Distribution of EC-SOD in kidney Zelko and Folz, Endocrinology 2005

10 ADRIAMYCIN NEPHROPATHY Murine model for FSGS Single IV (tail vein) injection Glomerular injury  proteinuria Tubular damage / fibrosis Superoxide-mediated

11 ADR INJURY IN WILD TYPE MICE serum creatinine (mg/dL) mg Ualb / mg UCr **

12 ADR DEPLETES RENAL EC-SOD * *

13 EC-SOD KNOCKOUT MICE Global knockouts (KO) No overt phenotype under basal conditions

14 EC-SOD KO MICE ARE SENSTIVIE TO ADR INJURY WT ADR KO ADR DHE *

15 NADPH OXIDASE *

16 EC-SOD KO MICE ARE SENSTIVIE TO ADR INJURY * * * * * *

17 EC-SOD KO MICE ARE SENSITIVE TO ADR INJURY

18 * * *

19 WNT/BETA-CATENIN SIGNALING Developmental pathway Quiescent in normal adult kidney tissue Upregulated in glomerular and interstitial injuries Blockade ameliorates of renal injury He, JASN (2009, 2011); Hao, JASN (2011); Dai, JASN (2009)

20 EC-SOD KO MICE ARE SENSTIVIE TO ADR INJURY WT KO β-catenin *

21 SUMMARY EC-SOD is depleted from kidneys after ADR EC-SOD KO mice are sensitized to oxidative stress, proteinuria and fibrosis after ADR EC-SOD KO have increased  -catenin activation after ADR

22 MODEL OF INJURY ADRIAMYCIN PODOCYTE / GLOMERULAR INJURY PROTEINURIA FIBROSISDECREASED RENAL FUNCTION EC-SOD

23 ACKNOWLEDGMENTS Liu Lab Youhua Liu Dong Zhou Liangxiang Xiao Lin Lin Tom Kleyman Tim Oury Donna Beer-Stolz Bruce Freeman Ken Hallows Pittsburgh Center for Kidney Research Center for Biologic Imaging NIDDK R01 DK091239 NIDDK T32 DK061296 AHA FTF 16990086

24 Tokarska-Schlattner, J of Mol and Cell Card (2006) MECHANISM OF ACTION


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