Found 230 results
Introduction: Precision Medicine for Glomerular Disease: The Road Forward.. Semin Nephrol. 35(3):209-11.
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2015. JAK inhibition and progressive kidney disease.. Curr Opin Nephrol Hypertens. 24(1):88-95.
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2015. Kidney glycosphingolipids are elevated early in diabetic nephropathy and mediate hypertrophy of mesangial cells.. Am J Physiol Renal Physiol. 309(3):F204-15.
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2015. Localization of APOL1 protein and mRNA in the human kidney: nondiseased tissue, primary cells, and immortalized cell lines.. J Am Soc Nephrol. 26(2):339-48.
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2015. The macrophage phagocytic receptor CD36 promotes fibrogenic pathways on removal of apoptotic cells during chronic kidney injury.. Am J Pathol. 185(8):2232-45.
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2015. Maintenance of GLUT4 expression in smooth muscle prevents hypertension-induced changes in vascular reactivity.. Physiol Rep. 3(2)
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2015. Matching Kidneys and Urines: Establishing Noninvasive Surrogates of Intrarenal Events in Primary Glomerulonephritis.. Semin Nephrol. 35(3):256-65.
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2015. Matching the Genotype in Resolution: Innovative Ways of Phenotype Capture.. Semin Nephrol. 35(3):279-90.
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2015. Melatonin prevents myeloperoxidase heme destruction and the generation of free iron mediated by self-generated hypochlorous acid.. PLoS One. 10(3):e0120737.
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2015. The Metabolic Syndrome and Microvascular Complications in a Murine Model of Type 2 Diabetes.. Diabetes. 64(9):3294-304.
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2015. Metabolomic Profiling of Arginine Metabolome Links Altered Methylation to Chronic Kidney Disease Accelerated Atherosclerosis.. J Proteomics Bioinform. Suppl 14
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2015. Metabolomics and diabetes: analytical and computational approaches.. Diabetes. 64(3):718-32.
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2015. Methylenetetrahydrofolate reductase (MTHFR) C677T gene polymorphism and diabetic nephropathy susceptibility in patients with type 2 diabetes mellitus.. Ren Fail. 37(8):1247-59.
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2015. MicroRNA-21 in glomerular injury.. J Am Soc Nephrol. 26(4):805-16.
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2015. MIsoMine: a genome-scale high-resolution data portal of expression, function and networks at the splice isoform level in the mouse.. Database (Oxford). 2015:bav045.
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2015. Molecular studies of lupus nephritis kidneys.. Immunol Res. 63(1-3):187-96.
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2015. Podometrics as a Potential Clinical Tool for Glomerular Disease Management.. Semin Nephrol. 35(3):245-55.
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2015. Regulatory network inferred using expression data of small sample size: application and validation in erythroid system.. Bioinformatics. 31(15):2537-44.
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2015. Ret is critical for podocyte survival following glomerular injury in vivo.. Am J Physiol Renal Physiol. 308(7):F774-83.
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2015. RTN1 mediates progression of kidney disease by inducing ER stress.. Nat Commun. 6:7841.
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2015. Serum amyloid A and inflammation in diabetic kidney disease and podocytes.. Lab Invest. 95(3):250-62.
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2015. Shp2 Associates with and Enhances Nephrin Tyrosine Phosphorylation and Is Necessary for Foot Process Spreading in Mouse Models of Podocyte Injury.. Mol Cell Biol. 36(4):596-614.
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2015. Sphingomyelinase-like phosphodiesterase 3b expression levels determine podocyte injury phenotypes in glomerular disease.. J Am Soc Nephrol. 26(1):133-47.
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2015. Strategy and rationale for urine collection protocols employed in the NEPTUNE study.. BMC Nephrol. 16:190.
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