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Publication : Denervation-induced skeletal muscle fibrosis is mediated by CTGF/CCN2 independently of TGF-β.

First Author  Rebolledo DL Year  2019
Journal  Matrix Biol Volume  82
Pages  20-37 PubMed ID  30716392
Mgi Jnum  J:282277 Mgi Id  MGI:6378349
Doi  10.1016/j.matbio.2019.01.002 Citation  Rebolledo DL, et al. (2019) Denervation-induced skeletal muscle fibrosis is mediated by CTGF/CCN2 independently of TGF-beta. Matrix Biol 82:20-37
abstractText  Muscular fibrosis is caused by excessive accumulation of extracellular matrix (ECM) that replaces functional tissue, and it is a feature of several myopathies and neuropathies. Knowledge of the biology and regulation of pro-fibrotic factors is critical for the development of new therapeutic strategies. Upon unilateral sciatic nerve transection, we observed accumulation of ECM proteins such as collagen and fibronectin in the denervated hindlimb, together with increased levels of the profibrotic factors transforming growth factor type beta (TGF-beta) and connective tissue growth factor (CTGF/CCN2). In mice hemizygous for CTGF/CCN2 or in mice treated with a blocking antibody against CTGF/CCN2, we observed reduced accumulation of ECM proteins after denervation as compared to control mice, with no changes in fibro/adipogenic progenitors (FAPs), suggesting a direct role of CTGF/CCN2 on denervation-induced fibrosis. During time course experiments, we observed that ECM proteins and CTGF/CCN2 levels are increased early after denervation (2-4days), while TGF-beta signaling shows a delayed kinetics of appearance (1-2weeks). Furthermore, blockade of TGF-beta signaling does not decrease fibronectin or CTGF levels after 4days of denervation. These results suggest that in our model CTGF/CCN2 is not up-regulated by canonical TGF-beta signaling early after denervation and that other factors are likely involved in the early fibrotic response following skeletal muscle denervation.
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