Telaprevir Treatment Reduces Paralysis in a Mouse Model of Enterovirus D68 Acute Flaccid Myelitis

Joshua Frost1, Michael J Rudy2, J Smith Leser2

  • 1Department of Immunology & Microbiology, University of Colorado School of Medicine, Aurora, Colorado, USA.

Insights

Early treatment with telaprevir, an antiviral drug, improved paralysis outcomes in mice with acute flaccid myelitis (AFM) caused by enterovirus D68 (EV-D68). This study shows telaprevir

Area of Science:

  • Virology
  • Neurology
  • Pharmacology

Background:

  • Acute flaccid myelitis (AFM) is a serious paralytic illness, with outbreaks linked to enterovirus D68 (EV-D68) in the US since 2014.
  • Current treatments for EV-D68-associated AFM are supportive, lacking specific FDA-approved antiviral therapies.
  • Telaprevir, an FDA-approved protease inhibitor, demonstrates in vitro efficacy against EV-D68 replication.

Purpose of the Study:

  • To evaluate the efficacy of early telaprevir treatment in a murine model of EV-D68-associated AFM.
  • To determine the impact of telaprevir on viral load, apoptosis, and motor neuron survival in AFM.
  • To assess the therapeutic window and dose-limiting toxicities of telaprevir for AFM treatment.

Main Methods:

  • Utilized a Swiss Webster (SW) mouse model infected with EV-D68 to mimic AFM.
  • Administered telaprevir treatment early in the disease course following intramuscular inoculation.
  • Assessed paralysis outcomes, viral titers, apoptotic activity in muscles and spinal cords, and motor neuron populations.

Main Results:

  • Early telaprevir treatment significantly improved paralysis outcomes in infected mice.
  • Telaprevir reduced viral titers and apoptotic activity in muscles and spinal cords at early time points.
  • Treatment preserved motor neuron populations and reduced weakness in limbs beyond the site of inoculation.
  • Delayed treatment or doses exceeding 35 mg/kg showed diminished efficacy or toxicity.

Conclusions:

  • Early administration of telaprevir demonstrates in vivo efficacy against EV-D68, improving AFM outcomes in a mouse model.
  • Telaprevir's benefits include reduced viral load, apoptosis, and preservation of motor neurons, leading to better functional recovery.
  • This study provides proof of principle for using an FDA-approved antiviral in AFM and highlights the need for developing better-tolerated therapies with wider therapeutic windows.

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