Artesunate Alleviate Kidney Fibrosis by Restoring Klotho Protein and Suppressing Wnt/β-Catenin Signalling Pathway
MOHAMMAD, G. H.; Kieswich, J.; Kumar, A.; McCafferty, K.; Chakraborty, R.; Thiemermann, C.; Yaqoob, M. M.
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Chronic kidney disease (CKD) is a global health concern that often progresses to renal failure and premature death. Regardless of etiology of CKD, kidney fibrosis is the main determinant of progressive CKD. Renal fibrosis is characterized by excessive collagen and extracellular-matrix (ECM) deposition, which impairs renal function with an irreversible loss of nephrons. Currently, there are no effective antifibrotic therapies to halt the progression of CKD to the end-stage kidney failure (ESKF). Artesunate has recently shown antifibrotic effects in various animal models, but its efficacy in renal fibrosis remains unexplored. In this study, the efficacy of artesunate was evaluated in a unilateral ureteral obstruction (UUO) mouse model and in primary human kidney fibroblasts (HKF). Mechanistic investigation including immunoblot analysis, immunohistochemistry, gene expression assay, enzyme-linked immunosorbent assay (ELISA) and other tools were used to study the underlying molecular mechanisms of antifibrotic effects of artesunate. Results of this study showed that artesunate ameliorated multiple profibrotic pathways including transforming growth factor-beta (TGF-{beta}) expression in UUO model and reduced profibrotic markers including alpha-smooth muscle actin (-SMA), fibronectin, collagen I, and vimentin in both in-vivo and in-vitro models. Mechanistic studies indicated that artesunate treatment abrogated the TGF-{beta}/SMAD pathway, restored klotho-protein expression and attenuated both PI3K/Akt and Wnt/{beta}-catenin pathways. Additionally, artesunate inhibited cell proliferation in UUO and induced ferroptosis in HKF cell culture. In conclusions our study demonstrates that artesunate treatment abrogated fibroblast activation, attenuated canonical and non-canonical TGF-{beta} pathways, inhibited cell proliferation in UUO and selectively induced ferroptosis in HKF cell culture, which may offer a potential treatment to attenuate kidney fibrosis and progressive CKD. Graphic Abstract O_FIG O_LINKSMALLFIG WIDTH=200 HEIGHT=121 SRC="FIGDIR/small/644310v1_ufig1.gif" ALT="Figure 1"> View larger version (30K): org.highwire.dtl.DTLVardef@1d70fe3org.highwire.dtl.DTLVardef@5423e7org.highwire.dtl.DTLVardef@12866org.highwire.dtl.DTLVardef@37f1d_HPS_FORMAT_FIGEXP M_FIG C_FIG
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