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Effect of the AHR Inhibitor CH223191 as an Adjunct Treatment for Mammarenavirus Infections
Miguel Angel Pelaez1, Jonna B Westover2, Dionna Scharton2
1Laboratorio de Estrategias Antivirales, Departamento de Química Biológica, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires (UBA), Buenos Aires 1428, Argentina.
Abstract:
The family Arenaviridae encompasses zoonotic, rodent-borne pathogens (e.g., Lassa, Machupo, and Junín viruses) that cause severe viral hemorrhagic fevers with high case fatality rates. The current therapeutic landscape is severely limited, underscoring the urgent need for novel antiviral strategies. A promising approach involves combining directly acting antivirals with host-targeted antivirals. A compelling host-targeted antiviral target is the aryl hydrocarbon receptor (AHR). This ubiquitous ligand-activated transcription factor is a recognized pro-viral host factor across multiple viral families. Building on prior work with Junín and Tacaribe viruses, we investigated whether the AHR inhibitor CH223191 could enhance the virus-directed antiviral activity of favipiravir against these viruses. First, we evaluated the toxicity and antiviral potential of CH223191 against a lethal Junín virus infection in male and female hTfR1 mice. After demonstrating substantial protection, we conducted preliminary assays to study the antiviral effects of combining CH223191 and favipiravir on Tacaribe virus (TCRV) infections in the Vero cell culture model. We observed synergistic interaction with all four models (ZIP, Loewe, Bliss, and HSA). We next determined the sub-optimal dose of favipiravir and conducted an antiviral combination study in the AG129 mouse model infected with TCRV. The combination effectively protected mice from a lethal TCRV infection and showed cooperative effects, reducing weight loss and viral loads. Overall, these results show that the AHR is a promising pharmacological target for the development of novel antivirals. Furthermore, we discovered a cooperative interaction between the activities of favipiravir and CH223191.
Insights
The aryl hydrocarbon receptor (AHR) inhibitor CH223191 combined with favipiravir shows promise against severe hemorrhagic fever viruses. This combination therapy offers a novel strategy to combat arenaviral infections.
Area of Science:
- Virology
- Immunology
- Pharmacology
Background:
- Arenaviridae are zoonotic viruses causing severe hemorrhagic fevers.
- Limited therapeutic options necessitate novel antiviral strategies.
- The aryl hydrocarbon receptor (AHR) is a pro-viral host factor.
Purpose of the Study:
- To investigate if AHR inhibition enhances favipiravir's antiviral activity against arenaviruses.
- To evaluate CH223191 and favipiravir combination therapy for Junín and Tacaribe virus infections.
Main Methods:
- Toxicity and antiviral assays of CH223191 in Junín virus-infected mice.
- In vitro synergy testing of CH223191 and favipiravir against Tacaribe virus.
- In vivo combination therapy study in Tacaribe virus-infected mice.
Main Results:
- CH223191 demonstrated protection against lethal Junín virus infection.
- The combination of CH223191 and favipiravir showed synergistic antiviral effects against Tacaribe virus in vitro.
- Combination therapy protected mice from lethal Tacaribe virus infection, reducing weight loss and viral loads.
Conclusions:
- The aryl hydrocarbon receptor (AHR) is a viable pharmacological target for novel antiviral development.
- A cooperative interaction exists between favipiravir and CH223191, offering a promising combination therapy for arenaviral infections.
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