Role of podocyte B7-1 in diabetic nephropathy
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American Society of Nephrology
Abstract
Podocyte injury and resulting albuminuria are hallmarks of diabetic nephropathy, but targeted therapies to halt or prevent these complications are currently not available. Here, we show that the immune-related molecule B7-1/CD80 is a critical mediator of podocyte injury in type 2 diabetic nephropathy. We report the induction of podocyte B7-1 in kidney biopsy specimens from patients with type 2 diabetes. Genetic and epidemiologic studies revealed the association of two single nucleotide polymorphisms at the B7-1 gene with diabetic nephropathy. Furthermore, increased levels of the soluble isoform of the B7-1 ligand CD28 correlated with the progression to ESRD in individuals with type 2 diabetes. In vitro, high glucose conditions prompted the phosphatidylinositol 3 kinase-dependent upregulation of B7-1 in podocytes, and the ectopic expression of B7-1 in podocytes increased apoptosis and induced disruption of the cytoskeleton that were reversed by the B7-1 inhibitor CTLA4-Ig. Podocyte expression of B7-1 was also induced in vivo in two murine models of diabetic nephropathy, and treatment with CTLA4-Ig prevented increased urinary albumin excretion and improved kidney pathology in these animals. Taken together, these results identify B7-1 inhibition as a potential therapeutic strategy for the prevention or treatment of diabetic nephropathy. Copyright © 2014 by the American Society of Nephrology.
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Adult, Aged, Animals, Antigens, cd80, Diabetes mellitus, type 1, Diabetic nephropathies, Female, Humans, Male, Mice, Mice, inbred c57bl, Middle aged, Podocytes, Up-regulation, Abatacept, Albumin, B7 antigen, Cd28 antigen, Creatinine, Glucose, Hemoglobin a1c, Phosphatidylinositol 3 kinase, Synaptopodin, Albuminuria, Animal experiment, Animal model, Apoptosis, Article, Cell disruption, Cell function, Cell structure, Clinical article, Controlled study, Cytoskeleton, Diabetic nephropathy, Disease course, End stage renal disease, Fluorescence activated cell sorting, Follow up, Glucose intake, Human, Human tissue, In vitro study, Kidney biopsy, Kidney function, Mouse, Non insulin dependent diabetes mellitus, Nonhuman, Podocyte, Priority journal, Protein degradation, Protein expression, Real time polymerase chain reaction, Risk factor, Single nucleotide polymorphism, Upregulation, Western blotting, Animal, C57bl mouse, Insulin dependent diabetes mellitus, Physiology