PofoliaShared via Pofolia

Journal of Clinical Microbiology· 2026Q1

Rifabutin disk diffusion on chelated Mueller-Hinton agar: a robust methodological framework for accurate Acinetobacter baumannii susceptibility testing

Michelle Zorawik, Jordyn VanOrman, Luke Bender, Lauren Tanner et al.

Short summary

A new disk diffusion method using chelated Mueller-Hinton agar (MHA) with a 20-µg rifabutin disk accurately assesses susceptibility in carbapenem-resistant Acinetobacter baumannii (CRAB), overcoming underestimation by standard iron-rich media.

AI-generated from the title and abstract; the full text is not read.

Key points

  • A 20-µg rifabutin disk on chelated Mueller-Hinton agar (MHA) accurately tests susceptibility in Acinetobacter baumannii.
  • Chelated MHA, supplemented with 100 mg/L EDTA, corrects for iron interference that underestimates rifabutin's activity.
  • The method provides clear and reproducible zone-of-inhibition diameters correlating with MICs.
  • A. baumannii NCTC 13304 is proposed as a candidate quality control strain.

AI-generated from the title and abstract; the full text is not read.

Abstract

ABSTRACT Carbapenem-resistant Acinetobacter baumannii (CRAB) is an extensively drug-resistant pathogen requiring new therapeutic strategies. Rifabutin (RBT), a U.S. Food and Drug Administration (FDA)-approved rifamycin, has demonstrated potent activity against CRAB; however, its activity is systematically underestimated by conventional antimicrobial susceptibility testing (AST) performed in conventional iron-rich Mueller-Hinton media, necessitating methods that accurately predict in vivo efficacy to guide its clinical use. Here, we describe the development of a disk diffusion method for RBT susceptibility testing against A. baumannii . Following Clinical and Laboratory Standards Institute (CLSI) M23 “Development of In Vitro Susceptibility Test Methods, Breakpoints, and Quality Control Parameters” guidance, multiple disk potencies were evaluated across standard and chelated Mueller-Hinton agar (MHA), including EDTA-supplemented media, and zone-of-inhibition (ZOI) diameters were correlated with MICs determined by agar dilution. A 20-µg RBT disk on chelated MHA, or equivalently on MHA supplemented with 100 mg/L EDTA, provided clear and reproducible discrimination of tentative wild-type and non-wild-type phenotypes, and preliminary quality control testing supported A. baumannii NCTC 13304 as a candidate quality control strain. While this investigational method has not been reviewed or approved by the CLSI, it was developed in concordance with the M23 guidance and addresses the key limitations of conventional AST, providing a robust framework for interlaboratory validation and future breakpoint determination. IMPORTANCE Antimicrobial susceptibility testing is a critical tool for guiding clinical treatment decisions. Rifabutin exhibits potent activity against carbapenem-resistant Acinetobacter baumannii (CRAB) under the iron-restricted conditions encountered in vivo ; however, its activity is systematically underestimated by standard testing methods in iron-rich Mueller-Hinton media. Here, we describe a robust, simple, and reproducible disk diffusion method using a 20-µg rifabutin disk on chelated Mueller-Hinton agar, which enables accurate assessment of rifabutin activity against A. baumannii . Our method provides a practical foundation for standardized rifabutin susceptibility testing, future breakpoint development, and broader evaluation of rifabutin against CRAB to ultimately support its implementation in clinical microbiology laboratories.

The authors' abstract, as published at the source. Journal of Clinical Microbiology, 2026 · DOI ↗

TakeawaysPremium
Ask the paperFree account

Continue with a free account

Ask the paper: 3 free questions a day about this paper; save it, get its citation, new summaries every day for your field. Takeaways are Premium.

Continue free on the web

Sign in with Google or Apple; no card needed. You come back to this paper.

On your phone:

Molecular MedicineBiochemistry, Genetics and Molecular Biology