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Isolation and Quantification of Zika Virus from Multiple Organs in a Mouse
Published on: August 15, 2019
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.
Abstract:
Ribavirin (RBV) is a guanosine analogue triazole most commonly used in the treatment of chronic hepatitis C (HCV) infection. Although its mechanism of action is a matter of debate, several possibilities have been proposed, including depletion of guanine nucleotides through inhibition of inosine monophosphate dehydrogenase (IMPDH). IMPDH has been shown to assemble into micron-scale rod- and ring-shaped structures (rods/rings or RR), also called "IMPDH filaments," both in vitro and in vivo. Formation of RR structures can occur naturally, potentially to influence IMPDH activity, or when de novo guanosine monophosphate biosynthesis or IMPDH itself are inhibited by nutrient deprivation or drugs like RBV. Numerous studies have also reported the occurrence of autoantibodies targeting RR structures (anti-RR) in HCV patients previously treated or under treatment with interferon-α and ribavirin (IFN/RBV) combination therapy. For this brief study, we considered the strong association between RR autoantibodies and IFN/RBV treatment, and the lack of data assessing how RBV affects RR formation in a variety of tissues in vivo. First, RR structures formed in the spleen and pancreas of normal mice without any treatment. Then, in RBV-treated mice, we detected RR structures in a number of tissues, including stomach, liver, spleen, kidney, brain, skin, and cardiac and skeletal muscle. We made several intriguing observations: predominance of RR structures in the mucosa and submucosa layers of the stomach wall; a high proportion of RR-positive cells in the cerebral cortex, suggesting that RBV actually crosses the blood-brain barrier; and a higher ratio of rings to rods in the epidermis compared to the dermis layer of the skin. Screening for RR structures appears to be a useful method to track tissue penetration of RBV and the many RR-inducing drugs previously identified.
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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