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Published on: June 23, 2015
Ameliorating liver disease in an autosomal recessive polycystic kidney disease mouse model
Murali K Yanda1, Adi Zeidan1, Liudmila Cebotaru1
1Departments of Medicine and Physiology, The Johns Hopkins University School of Medicine, Baltimore, Maryland, United States.
Abstract:
Systemic and portal hypertension, liver fibrosis, and hepatomegaly are manifestations associated with autosomal recessive polycystic kidney disease (ARPKD), which is caused by malfunctions of fibrocystin/polyductin (FPC). The goal is to understand how liver pathology occurs and to devise therapeutic strategies to treat it. We injected 5-day-old Pkhd1del3-4/del3-4 mice for 1 mo with the cystic fibrosis transmembrane conductance regulator (CFTR) modulator VX-809 designed to rescue processing and trafficking of CFTR folding mutants. We used immunostaining and immunofluorescence techniques to evaluate liver pathology. We assessed protein expression via Western blotting. We detected abnormal biliary ducts consistent with ductal plate abnormalities, as well as a greatly increased proliferation of cholangiocytes in the Pkhd1del3-4/del3-4 mice. CFTR was present in the apical membrane of cholangiocytes and increased in the Pkhd1del3-4/del3-4 mice, consistent with a role for apically located CFTR in enlarged bile ducts. Interestingly, we also found CFTR in the primary cilium, in association with polycystin (PC2). Localization of CFTR and PC2 and overall length of the cilia were increased in the Pkhd1del3-4/del3-4 mice. In addition, several of the heat shock proteins; 27, 70, and 90 were upregulated, suggesting that global changes in protein processing and trafficking had occurred. We found that a deficit of FPC leads to bile duct abnormalities, enhanced cholangiocyte proliferation, and misregulation of heat shock proteins, which all returned toward wild type (WT) values following VX-809 treatment. These data suggest that CFTR correctors can be useful as therapeutics for ARPKD. Given that these drugs are already approved for use in humans, they can be fast-tracked for clinical use.NEW & NOTEWORTHY ARPKD is a multiorgan genetic disorder resulting in newborn morbidity and mortality. There is a critical need for new therapies to treat this disease. We show that persistent cholangiocytes proliferation occurs in a mouse model of ARPKD along with mislocalized CFTR and misregulated heat shock proteins. We found that VX-809, a CFTR modulator, inhibits proliferation and limits bile duct malformation. The data provide a therapeutic pathway for strategies to treat ADPKD.
Insights
Autosomal recessive polycystic kidney disease (ARPKD) causes liver problems due to fibrocystin/polyductin (FPC) deficiency. VX-809, a CFTR modulator, reduced bile duct abnormalities and cholangiocyte proliferation in ARPKD mice, suggesting a potential therapy.
Area of Science:
- Genetics and Molecular Biology
- Hepatology and Gastroenterology
- Pharmacology and Drug Discovery
Background:
- Autosomal recessive polycystic kidney disease (ARPKD) is a genetic disorder characterized by liver pathologies including fibrosis and hepatomegaly, linked to fibrocystin/polyductin (FPC) dysfunction.
- Understanding the mechanisms of liver pathology in ARPKD is crucial for developing effective therapeutic strategies.
- Current treatment options for ARPKD-related liver disease are limited, highlighting the need for novel interventions.
Purpose of the Study:
- To investigate the liver pathology in a mouse model of ARPKD and explore the therapeutic potential of a cystic fibrosis transmembrane conductance regulator (CFTR) modulator.
- To elucidate the role of CFTR in the biliary system of ARPKD models and its interaction with FPC.
- To assess the efficacy of VX-809, a CFTR corrector, in ameliorating ARPKD-associated liver abnormalities.
Main Methods:
- Treatment of 5-day-old Pkhd1 mice (ARPKD model) with VX-809 for one month.
- Histological analysis using immunostaining and immunofluorescence to evaluate liver pathology and biliary duct abnormalities.
- Western blotting to assess protein expression, including CFTR and heat shock proteins.
Main Results:
- Pkhd1 mice exhibited abnormal biliary ducts, increased cholangiocyte proliferation, and altered CFTR localization in bile ducts and primary cilia.
- CFTR and polycystin-2 (PC2) localization and primary cilium length were increased in ARPKD mice.
- VX-809 treatment normalized bile duct structure, reduced cholangiocyte proliferation, and restored heat shock protein levels toward wild-type values.
Conclusions:
- Deficiency in FPC leads to significant bile duct abnormalities, enhanced cholangiocyte proliferation, and dysregulation of heat shock proteins in ARPKD.
- VX-809, a CFTR modulator, effectively reverses these pathological changes in the ARPKD mouse model.
- CFTR correctors represent a promising therapeutic avenue for ARPKD, with potential for rapid clinical translation due to existing human approvals.
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