Dexamethasone Blocks Adriamycin-induced Podocytes'Mobility via Impacting Nephrin Expression
Abstract
To explore how dexamethasone (Dex) directly restores kidney podocyte function in adriamycin (ADR)-induced nephrotic model and the effects of Dex on the motility of podocytes,to analyze whether nephrin is a key signal molecule in the process. MethodsThe cultured podocytes were divided into three growps: ADR treated group,ADR+Dex group,blank control group. The analyses of podocytes function were performed using scrape-wound,Transwell migration assays and FITC-BSA. Quantitative real-time PCR and Western blot were used to test the expression of nephrin. Male SD rats were used to generate ADR-induced nephrology model,and randomly divided into three groups: ADR group,ADR+Dex group and normal group. At 7 d,14 d,21 d and 28 d after ADR injection,24 h urine protein was measured as well. Podocyte foot process effacement was observed under transmission electron microscopy. ResultsPodocytes’ motility,permeability of a monolayer of podocytes incubated with FITC-BSA,the expression of nephrin were higher in ADR group than those in blank control group (P<0.05); on the contrary,the indexes above in Dex+ADR group were decreased when compared with ADR group (P<0.05). 24 h urine protein increased significantly at day 14 (vs. normal group P<0.001) and peaked at day 28 in ADR rats (vs. normal group P<0.001),whereas decreased at day 14,21 and 28 in Dex+ADR group (vs. ADR group,P<0.001). The FWP of ADR-treated rats was greater than normal group and Dex+ADR group (P<0.01). ConclusionDex impacts the expression of nephrin,relieves the enhanced motility induced by ADR and decreases urine protein level.
Keywords: Dexamethasone, Adriamycin, Podocytes, Motility, Nephrin
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GVASON K. PATRAKKA J, WARTIOVAARA J. Hereditary proteinuria syndromes and mechanisms of proteinuria. NEJM, 2006,354 (13): 1387-1 101.
FAN X, LI Q, PISAREKHOROWITZ A, et al. Inhibitory effects of Robo2 on nephrin: a crosstalk between positive and negative signals regulating podocyte structure. Cell Rep, 2012,2(1):52-61.
LI X. CHUANG PY, D’ AGATI VD, et al. Nephrin preserves podocyte viability and glomerular structure and function in adult kidneys. J Am Soc Nephrol. 2015 , 26 ( 10); 23-61.
WADA Y, ABE M, MORITANI H, et al. Potential of urinary nephrin as a biomarker reflecting podocyte dysfunction in various kidney disease models. Exp Biol Med (Maywood), 2016,241( 16): 1865-1876.
SHANK LAND SJ, PIPPIN JW, REISER J. et al. Podocytes in culture; past, present, and future. Kidney Int, 2007,72(1):26-36.
GAO X, XU H. LIU H. et al. Angiopoietin-like protein 3 regulates the motility and permeability of podocytes by altering nephrin expression in vitro. Biochem Biophys Res Commun,2010,399( 1);31-36.
BENCHETRIT S, GOLAN E, PODJARNY E, et al. Low molecular weight heparin reduces proteinuria and modulates glomerular TNF-alpha production in the early phase of adriamycin nephropathy. Nephron.2001,87(2); 155-160.
RANSOM RF, LAM NG, HALLETT MA, et al. Glucocorticoids protect and enhance recovery of cultured murine podocytes via actin filament stabilization. Kidney Int. 2005,68(6):2473-2483.
LEE YK, KWON T, KIM DJ, et al. Ultrastructural study on nephrin expression in experimental puromycin aminonucleoside nephrosis. Nephrol Dial Transplant, 2004, 19(12):2981-2986.
MIGLIORINI A, EBID R. SCHERBAUM C'R. et al. The danger control concept in kidney disease; mesangial cells. J Nephrol,2013,26(3);437-449.
TANAKA R. YOSHIKAWA N, NAKAMURA H, et al. Infusion of peripheral blood mononuclear cell products from nephrotic children increases albuminuria in rats. Nephron, 1992,60(1)j35-41.
GARIN EH. Circulating mediators of proteinuria in idiopathic minimal lesion nephrotic syndrome. Pediatr Nephrol .2000, 14(8/9): 872-878.
YANK. KUrX) A. HIRANO H, et al. Subcellular localization of glucocorticoid receptor protein in the human kidney glomerulus. Kidney Int, 1999 ,56( 1): 65-73.
XING CY, SALEEM MA, COWARD RJ, et al. Direct effects of dexamethasone on human podocytes. Kidney Int, 2006,70(6):1038-1045.
WADAT, PIPPIN JW, MARSHALL CB, et al. Dexamethasone prevents podocyte apoptosis induced by puromycin aminonucleoside; role of p53 and Bcl-2-related family proteins. J Am Soc Nephrol.2005,16(9) ;2615-2625.
KERJASCHKI D. Caught flat-footed; podocyte damage and the molecular bases of focal glomerulosclerosis. J Clin Invest, 2001,108(11);1583-1587.
KOUKOURITAKI SB, LIANOS EA. Glucocorticoid effect on human mesangial cell cytoskeletal proteins. J Lab Clin Med,1999,133(4) :378-383.
ICHIMURA K, KURIHARA H, SAKAI T. Actin filament organization of foot processes in vertebrate glomerular podocytes. Cell Tissue Res,2007,329(3) : 541-557.
PIERCHALA BA, MUNOZ MR, TSUI CC. Proteomic analysis of the slit diaphragm complex: CLIC5 is a protein critical for podocyte morphology and function. Kidney Int, 2010,78(9);868-882.
HUBER ТВ. BENZING T. The slit diaphragm: a signaling platform to regulate podocyte function. Curr Opin Nephrol Hypertens. 2005 Л4(3):211-216.
OHASHI T, UCHIDA K. UCHIDA S, et al. Dexamethasone increases the phosphorylation of nephrin in cultured podocytes. Clin Exp Nephrol,2011,15(5) ;688-693.
LEE VW. HARRIS DC. Adriamycin nephropathy; a model of focal segmental glomerulosclerosis. Nephrology (Carlton),2011,16( 1);30-38.
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