A Purpose-Synthesised Anti-Fibrotic Agent Attenuates Experimental Kidney Diseases in the RatReportar como inadecuado

A Purpose-Synthesised Anti-Fibrotic Agent Attenuates Experimental Kidney Diseases in the Rat - Descarga este documento en PDF. Documentación en PDF para descargar gratis. Disponible también para leer online.

Background and Purpose

Locally-active growth factors have been implicated in the pathogenesis of many diseases in which organ fibrosis is a characteristic feature. In the setting of chronic kidney disease CKD, two such pro-fibrotic factors, transforming growth factor-ß TGF-ß and platelet-derived growth factor PDGF have emerged as lead potential targets for intervention. Given the incomplete organ protection afforded by blocking the actions of TGF-ß or PDGF individually, we sought to determine whether an agent that inhibited the actions of both may have broader effects in ameliorating the key structural and functional abnormalities of CKD.

Experimental Approach

Accordingly, we studied the effects of a recently described, small molecule anti-fibrotic drug, 3-methoxy-4-propargyloxycinnamoyl anthranilate FT011, Fibrotech Therapeutics, Australia, which should have these effects.

Key Results

In the in vitro setting, FT011 inhibited both TGF-ß1 and PDGF-BB induced collagen production as well as PDGF-BB-mediated mesangial proliferation. Consistent with these in vitro actions, when studied in a robust model of non-diabetic kidney disease, the 5-6 nephrectomised rat, FT011 attenuated the decline in GFR, proteinuria and glomerulosclerosis p<0.05 for all. Similarly, in the streptozotocin-diabetic Ren-2 rat, a model of advanced diabetic nephropathy, FT011 reduced albuminuria, glomerulosclerosis and tubulointerstitial fibrosis.

Conclusions and Implications

Together these studies suggest that broadly antagonising growth factor actions, including those of TGF-ß1 and PDGF-BB, has the potential to protect the kidney from progressive injury in both the diabetic and non-diabetic settings.

Autor: Richard E. Gilbert , Yuan Zhang , Spencer J. Williams, Steven C. Zammit, David I. Stapleton, Alison J. Cox, Henry Krum, Robyn Lan

Fuente: http://plos.srce.hr/


Documentos relacionados