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.

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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