Bacterial sensitivity distributions for biocides and metals
Artikel i vetenskaplig tidskrift, 2026

Understanding how potent metals and biocides are for inhibiting bacterial growth is key for understanding risks for ecological disturbances and for co-selection of resistance to antibiotics. The aim of this study was to gather MIC data from the public literature to generate a centralized biocide and metal minimum inhibitory concentration (MIC) dataset, emulating established specialized datasets for antibiotics. The resulting dataset contains data for 53 antibacterial biocides, 21 metals, and 17 related compounds, collected from 289 publications between 1973 and 2024. The dataset includes 20 378 MIC values across 164 bacterial species, with a strong overrepresentation of clinically relevant organisms such as Staphylococcus aureus and Escherichia coli. Biocides like chlorhexidine and benzalkonium chloride, as well as metals such as copper, zinc, arsenic, cadmium, and silver, were the most represented compounds in each case. Some inconsistent MIC values were observed, complicating cross-study comparisons. The data collected in this study emphasizes the urgent need for standardized susceptibility testing methodology and consistent terminology for research on reduced susceptibility to biocides and metals. By centralizing MIC data, this work provides part of the foundation for future efforts to assess ecological risks and co-selection with antibiotic resistance, identify data gaps, and support future regulatory evaluations.We compiled over 20 000 MIC values for biocides and metals into a single dataset to enable better comparisons, reveal gaps, and could help guiding future resistance research and regulation.

metal

co-selection

biocide

MIC

co-resistance

antimicrobial resistance

Författare

Daniel Jaen-Luchoro

Göteborgs universitet

D. G. Joakim Larsson

Göteborgs universitet

Johan Bengtsson Palme

Chalmers, Life sciences, Systembiologi

Göteborgs universitet

FEMS Microbiology Ecology

0168-6496 (ISSN) 15746941 (eISSN)

Vol. 102 8 fiag075

Framtidens patogener och resistensgener

Stiftelsen för Strategisk forskning (SSF) (FFL21-0174), 2022-08-01 -- 2027-12-31.

Ämneskategorier (SSIF 2025)

Miljövetenskap

DOI

10.1093/femsec/fiag075

PubMed

42429472

Mer information

Senast uppdaterat

2026-07-30