Abstract
MicroRNAs (miRNAs) are a class of noncoding RNA acting at a post-transcriptional level to control the expression of large sets of target mRNAs. While there is evidence that miRNAs deregulation plays a causative role in various complex disorders, their role in fibrotic kidney diseases is largely unexplored. Here, we found a strong up-regulation of miR-21 in the kidneys of mice with unilateral ureteral obstruction and also in the kidneys of patients with severe kidney fibrosis. In addition, mouse primary fibroblasts derived from fibrotic kidneys exhibited higher miR-21 expression level compared to those derived from normal kidneys. Expression of miR-21 in normal primary kidney fibroblasts was induced upon TGFβ exposure, a key growth factor involved in fibrogenesis. Finally, ectopic expression of miR-21 in primary kidney fibroblasts was sufficient to promote myofibroblast differentiation. As circulating miRNAs have been suggested as promising non-invasive biomarkers, we further assess whether circulating miR-21 levels are associated with renal fibrosis using sera from 42 renal transplant recipients, categorized according to their renal fibrosis severity, evaluated on allograft biopsies (Interstitial Fibrosis/Tubular Atrophy (IF/TA). Circulating miR-21 levels are significantly increased in patients with severe IF/TA grade (IF/TA grade 3: 3.0±1.0 vs lower grade of fibrosis: 1.5±1.2; p = 0.001). By contrast, circulating miR-21 levels were not correlated with other renal histological lesions. In a multivariate linear regression model including IF/TA grade and estimated GFR, independent associations were found between circulating miR-21 levels and IF/TA score (ß = 0.307, p = 0.03), and between miR-21 levels and aMDRD (ß = −0.398, p = 0.006). Altogether, these data suggest miR-21 has a key pathogenic role in kidney fibrosis and may represent a novel, predictive and reliable blood marker of kidney fibrosis.
Highlights
Renal fibrosis, the final common end stage of a wide variety of chronic kidney diseases, is characterized by the excessive and persistent accumulation of extracellular matrix (ECM) proteins responsible for the progressive destruction of kidney parenchyma [1,2]
Results miR-21 is a relevant miRNA involved in kidney fibrosis In a systematic approach to identify miRNAs involved in kidney fibrosis, we compared miRNA expression profile of fibrotic kidneys from mice 28 days after Unilateral Ureteral Obstruction (UUO) to that of control kidneys using microarray
We identified a panel of 50 miRNAs whose expression significantly differs between normal and fibrotic kidneys (Figure 1A and Table 1) of which 37 were down-regulated and 13 were up-regulated in mouse fibrotic kidneys
Summary
The final common end stage of a wide variety of chronic kidney diseases, is characterized by the excessive and persistent accumulation of extracellular matrix (ECM) proteins responsible for the progressive destruction of kidney parenchyma [1,2]. After the initial insult, the affected kidney tissue undergoes a cascade of molecular events to restore tissue integrity These processes include in particular the activation of kidney resident cells followed by the release of proinflammatory cytokines along with the subsequent infiltration of inflammatory monocytes/macrophages and T cells to the injured sites. Mesangial cells, fibroblasts, and tubular epithelial cells are stimulated and undergo phenotypic activation or transition and produce a large amount of ECM components. This continuous excessive deposition of ECM proteins results in fibrous scars and distorts the fine architecture of kidney tissue, leading to the loss of kidney function [8,9]
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