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一种用于治疗炭疽的抗耐药性抗生素。

A Resistance-Evading Antibiotic for Treating Anthrax.

作者信息

Hughes Dallas, Lawrence William, Peel Jennifer, Rosan de Winter, Ling Losee, Niiti Nitti, Aaron Peoples, Shukla Rhythm, MacGillavry Harold, Heine Henry, Martha Hensel, Elbert Whorton, Weingarth Markus, Lewis Kim

机构信息

NovoBiotic Pharmaceuticals.

University of Texas Medical Branch.

出版信息

Res Sq. 2024 Mar 25:rs.3.rs-3991430. doi: 10.21203/rs.3.rs-3991430/v1.

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 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 membrane, likely contributing to its unusually high potency against anthrax. Antibiotics evading resistance provide a rational solution to both AMR and engineered bioweapons.

摘要

抗生素耐药性危机(AMR)与数百万人的死亡相关,并损害了医学的声誉。特别令人担忧的是生物武器的威胁,炭疽就是一个例子。新型抗生素的引入有助于缓解AMR,但无法应对具有工程抗性的生物武器威胁。我们推断,泰克索菌素这种没有可检测到的耐药性的抗生素,特别适合应对武器化炭疽的挑战。泰克索菌素与不可变靶点(细胞壁聚合物的前体)结合。在这里,我们表明泰克索菌素在吸入性炭疽兔模型中具有高效性。吸入炭疽芽孢杆菌的孢子会导致极高的发病率和死亡率。在疾病发作后用泰克索菌素治疗兔子可迅速从血液和组织中清除病原体,使体温恢复正常,并防止组织损伤。泰克索菌素在炭疽芽孢杆菌膜表面组装成不可逆的超分子结构,这可能是其对炭疽异常高效的原因。规避耐药性的抗生素为AMR和工程化生物武器提供了合理的解决方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4bcf/10996807/b526b9d682ba/nihpp-rs3991430v1-f0001.jpg

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