A Rabbit Model for the Evaluation of Drugs for Treating the Chronic Phase of Botulism

Author:

Torgeman Amram,Diamant Eran,Dor Eyal,Schwartz Arieh,Baruchi Tzadok,Ben David Alon,Zichel RanORCID

Abstract

Antitoxin, the only licensed drug therapy for botulism, neutralizes circulating botulinum neurotoxin (BoNT). However, antitoxin is no longer effective when a critical amount of BoNT has already entered its target nerve cells. The outcome is a chronic phase of botulism that is characterized by prolonged paralysis. In this stage, blocking toxin activity within cells by next-generation intraneuronal anti-botulinum drugs (INABDs) may shorten the chronic phase of the disease and accelerate recovery. However, there is a lack of adequate animal models that simulate the chronic phase of botulism for evaluating the efficacy of INABDs. Herein, we report the development of a rabbit model for the chronic phase of botulism, induced by intoxication with a sublethal dose of BoNT. Spirometry monitoring enabled us to detect deviations from normal respiration and to quantitatively define the time to symptom onset and disease duration. A 0.85 rabbit intramuscular median lethal dose of BoNT/A elicited the most consistent and prolonged disease duration (mean = 11.8 days, relative standard deviation = 27.9%) that still enabled spontaneous recovery. Post-exposure treatment with antitoxin at various time points significantly shortened the disease duration, providing a proof of concept that the new model is adequate for evaluating novel therapeutics for botulism.

Funder

Israel Institute for Biological Research

Publisher

MDPI AG

Subject

Health, Toxicology and Mutagenesis,Toxicology

Reference45 articles.

1. Botulinum Toxin as a Biological Weapon

2. Bacterial toxins: a table of lethal amounts

3. Structure, activity, and immune (T and B cell) recognition of botulinum neurotoxins;Atassi;Crit. Rev. Immunol.,1999

4. Clostridium botulinum neurotoxin

5. Botulinum Neurotoxins: Biology, Pharmacology, and Toxicology

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