A Resistance-Evading Antibiotic for Treating Anthrax

Author:

Hughes Dallas1,Lawrence William2,Peel Jennifer2,Rosan de Winter3ORCID,Ling Losee1,Niiti Nitti1,Aaron Peoples1,Shukla Rhythm4,MacGillavry Harold3,Heine Henry5,Martha Hensel6,Elbert Whorton2,Weingarth Markus3ORCID,Lewis Kim7ORCID

Affiliation:

1. NovoBiotic Pharmaceuticals

2. University of Texas Medical Branch

3. Utrecht University

4. AMOLF

5. University of Florida

6. University of Texas MD Anderson

7. Antimicrobial Discovery Center, Department of Biology, Northeastern University

Abstract

Abstract The antimicrobial resistance crisis (AMR) is associated with millions of deaths and undermines the franchise of medicine. Of particular concern is the threat of bioweapons, exemplified by anthrax. Introduction of novel antibiotics helps mitigate AMR, but does not address the threat of bioweapons with engineered resistance. We reasoned that teixobactin, an antibiotic with no detectable resistance, is uniquely suited to address the challenge of weaponized anthrax. Teixobactinbinds to immutable targets, precursors of cell wall polymers. Here we show that teixobactinis highly efficacious in a rabbit model of inhalation anthrax. Inhaling spores of Bacillus anthracis causes overwhelming morbidity and mortality. Treating rabbits with teixobactinafter the onset of disease rapidly eliminates the pathogen from blood and tissues, normalizes body temperature, and prevents tissue damage. Teixobactinassembles into an irreversible supramolecular structure of the surface of B. anthracis membrane, likely contributing to its unusually high potency against anthrax. Antibiotics evading resistance provide a rational solution to both AMR and engineered bioweapons.

Publisher

Research Square Platform LLC

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