Academic Journal

In Vitro and In Vivo Evaluation of Nitroxoline as an Effective Antimicrobial Alternative to Poultry Production

Bibliographic Details
Title: In Vitro and In Vivo Evaluation of Nitroxoline as an Effective Antimicrobial Alternative to Poultry Production
Authors: Zhou, Y, Trush, MM, Ibbotson, L, Espina, L, Lankapalli, AK, Farley, AJM, Song, H, Wu, C, Cao, X, Xia, X, Gray-Hammerton, CJ, Moorey, A, Delaitre, A, Siegwart, G, Wang, S, Wang, Y, Shen, J, Schofield, CJ, Walsh, TR
Publisher Information: MDPI
Publication Year: 2026
Collection: Oxford University Research Archive (ORA)
Description: BackgroundAntimicrobial resistance is a major global challenge that is exacerbated by extensive antibiotic use in livestock farming. Identifying effective alternatives to widely used human antibiotics in animal production is vital to safeguard vital human medicines and ensure sustainable food systems. Here we describe studies identifying nitroxoline (NTX) as a promising antimicrobial candidate for use in poultry production.MethodsThe antibacterial activity and resistance potential of NTX were assessed in vitro. In vivo studies in chickens evaluated tolerance, therapeutic efficacy in Salmonella-infected birds, pharmacokinetics, tissue residue depletion, growth performance, and effects on caecal microbiota. NTX was administered in-feed at different dose levels. Pharmacokinetic parameters and withdrawal periods were determined, and caecal microbiota composition was analysed using ribosomal RNA 16S sequencing.ResultsNTX exhibits potent broad-spectrum antibacterial activity in vitro and low levels of resistance. NTX is well-tolerated in chickens at 500 mg/kg in-feed for 7 days and substantially reduces liver bacterial loads at 100 mg/kg in Salmonella-infected chickens. Pharmacokinetic and residue analyses reveal NTX manifests rapid absorption and distribution, high oral bioavailability (86%), and efficient tissue clearance with a 17-day withdrawal period required for skin-plus-fat clearance. NTX supplementation is associated with increased weight gain and improved feed efficiency compared to the control group, with performance comparable to chlortetracycline. Microbiota analysis indicates modulation of caecal bacterial communities, including increased Faecalibacterium and Lactobacillus.ConclusionsThese results indicate that NTX is a viable alternative to important human antibiotics widely deployed in poultry production, offering a potential approach to minimise antimicrobial resistance whilst maintaining animal health and food biosafety.
Document Type: article in journal/newspaper
Language: English
Relation: https://doi.org/10.3390/antibiotics15010062
DOI: 10.3390/antibiotics15010062
Availability: https://doi.org/10.3390/antibiotics15010062
https://ora.ox.ac.uk/objects/uuid:f5d8bf96-dd72-4e32-88c4-25944d7bd096
Rights: info:eu-repo/semantics/openAccess ; CC Attribution (CC BY)
Accession Number: edsbas.373DAB8B
Database: BASE
Description
DOI:10.3390/antibiotics15010062