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Published on: June 23, 2015
The lonidamine derivative H2-gamendazole reduces cyst formation in polycystic kidney disease
Shirin V Sundar1,2, Julie Xia Zhou2,3,4,5, Brenda S Magenheimer1,2
1Department of Biochemistry and Molecular Biology, University of Kansas Medical Center, Kansas City, Kansas.
Abstract:
Autosomal dominant polycystic kidney disease (ADPKD) is a debilitating renal neoplastic disorder with limited treatment options. It is characterized by the formation of large fluid-filled cysts that develop from kidney tubules through abnormal cell proliferation and cyst-filling fluid secretion driven by cAMP-dependent Cl- secretion. We tested the effectiveness of the indazole carboxylic acid H2-gamendazole (H2-GMZ), a derivative of lonidamine, to inhibit these processes using in vitro and in vivo models of ADPKD. H2-GMZ was effective in rapidly blocking forskolin-induced, Cl--mediated short-circuit currents in human ADPKD cells, and it significantly inhibited both cAMP- and epidermal growth factor-induced proliferation of ADPKD cells. Western blot analysis of H2-GMZ-treated ADPKD cells showed decreased phosphorylated ERK and decreased hyperphosphorylated retinoblastoma levels. H2-GMZ treatment also decreased ErbB2, Akt, and cyclin-dependent kinase 4, consistent with inhibition of heat shock protein 90, and it decreased levels of the cystic fibrosis transmembrane conductance regulator Cl- channel protein. H2-GMZ-treated ADPKD cultures contained a higher proportion of smaller cells with fewer and smaller lamellipodia and decreased cytoplasmic actin staining, and they were unable to accomplish wound closure even at low H2-GMZ concentrations, consistent with an alteration in the actin cytoskeleton and decreased cell motility. Experiments using mouse metanephric organ cultures showed that H2-GMZ inhibited cAMP-stimulated cyst growth and enlargement. In vivo, H2-GMZ was effective in slowing postnatal cyst formation and kidney enlargement in the Pkd1 mouse model. Thus, H2-GMZ treatment decreases Cl- secretion, cell proliferation, cell motility, and cyst growth. These properties, along with its reported low toxicity, suggest that H2-GMZ might be an attractive candidate for treatment of ADPKD.NEW & NOTEWORTHY Autosomal dominant polycystic kidney disease (ADPKD) is a renal neoplastic disorder characterized by the formation of large fluid-filled cysts that develop from kidney tubules through abnormal cell proliferation and cyst-filling fluid secretion driven by cAMP-dependent Cl- secretion. This study shows that the lonidamine derivative H2-GMZ inhibits Cl- secretion, cell proliferation, and cyst growth, suggesting that it might have therapeutic value for the treatment of ADPKD.
Insights
The drug H2-gamendazole (H2-GMZ) effectively treats Autosomal dominant polycystic kidney disease (ADPKD) by inhibiting cyst growth, cell proliferation, and chloride secretion. This promising therapeutic candidate shows low toxicity in ADPKD models.
Area of Science:
- Nephrology
- Molecular Biology
- Pharmacology
Background:
- Autosomal dominant polycystic kidney disease (ADPKD) is a genetic disorder causing kidney cysts and renal failure.
- Current ADPKD treatments are limited, necessitating novel therapeutic strategies.
- ADPKD cystogenesis involves abnormal cell proliferation and fluid secretion driven by cAMP-dependent chloride (Cl-) secretion.
Purpose of the Study:
- To investigate the therapeutic potential of H2-gamendazole (H2-GMZ) in preclinical models of ADPKD.
- To determine H2-GMZ's effects on Cl- secretion, cell proliferation, and cyst growth in ADPKD.
Main Methods:
- In vitro studies using human ADPKD cells and mouse metanephric organ cultures.
- In vivo studies utilizing a Pkd1 mouse model of ADPKD.
- Assessment of Cl- currents, cell proliferation markers, cytoskeletal changes, and cyst development.
Main Results:
- H2-GMZ inhibited forskolin-induced Cl- secretion in ADPKD cells.
- H2-GMZ significantly reduced cAMP- and EGF-induced ADPKD cell proliferation.
- H2-GMZ treatment decreased cyst growth in organ cultures and slowed kidney enlargement in vivo.
Conclusions:
- H2-gamendazole effectively inhibits key pathological processes in ADPKD, including Cl- secretion, cell proliferation, and cyst growth.
- H2-GMZ demonstrates therapeutic promise for ADPKD treatment due to its multifaceted inhibitory effects and reported low toxicity.
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