Ribavirin induces widespread accumulation of IMP dehydrogenase into rods/rings structures in multiple major mouse

Gerson Dierley Keppeke1, S John Calise2, Edward K L Chan2

  • 1Rheumatology Division, Escola Paulista de Medicina, Universidade Federal de São Paulo, Rua Botucatu 740, São Paulo, SP, 04023-062, Brazil.

Antiviral Research
|January 4, 2019
PubMed

Insights

Ribavirin (RBV) treatment induces inosine monophosphate dehydrogenase (IMPDH) rod- and ring-shaped structures (RR) in various mouse tissues, including the brain. Detecting these RR structures may track drug penetration in vivo.

Area of Science:

  • Biochemistry
  • Pharmacology
  • Cell Biology

Background:

  • Ribavirin (RBV) is an antiviral drug used for chronic hepatitis C (HCV) infection, with its mechanism of action debated.
  • Inosine monophosphate dehydrogenase (IMPDH) forms micron-scale rod- and ring-shaped structures (RR) in vitro and in vivo.
  • Autoantibodies against RR structures (anti-RR) are found in HCV patients treated with interferon-α and RBV (IFN/RBV).

Purpose of the Study:

  • To investigate the in vivo tissue distribution of RBV-induced RR structures.
  • To assess RBV's effect on RR formation across various organs.
  • To explore the potential of RR structures as biomarkers for RBV tissue penetration.

Main Methods:

  • Examination of RR structures in spleen and pancreas of untreated mice.
  • Detection of RR structures in multiple tissues (stomach, liver, spleen, kidney, brain, skin, muscle) of RBV-treated mice.
  • Comparative analysis of RR structure morphology and distribution within specific tissue layers (e.g., stomach wall, skin).

Main Results:

  • RR structures were detected in numerous tissues of RBV-treated mice, indicating systemic distribution.
  • A significant presence of RR structures was observed in the stomach's mucosa/submucosa and the brain's cerebral cortex.
  • Differential ratios of rings to rods were noted in skin layers, with higher ring prevalence in the epidermis.

Conclusions:

  • RBV treatment leads to the formation of RR structures in a wide array of mouse tissues, including crossing the blood-brain barrier.
  • The distribution patterns suggest RBV penetrates various organs.
  • Monitoring RR structures could serve as a method to track the tissue penetration of RBV and similar drugs.

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