Skip to main navigation Skip to search Skip to main content

Preserving the gut microbiome: hydrogel-forming microneedle delivery of tetracycline reduces gut microbiome disruption compared to oral administration

  • Stephen A Kelly
  • , Li Zhao
  • , Jonathan Nzakizwanayo
  • , Aoife M Rodgers
  • , Thomas P Thompson
  • , Andrew J Lee
  • , Helen O McCarthy
  • , John W McGrath
  • , Rebecca J Ingram
  • , Brian V Jones
  • , Brendan F Gilmore
  • , Ryan F Donnelly
  • Queen's University Belfast
  • School of Biological Sciences

Research output: Contribution to journalArticlepeer-review

Abstract

Antibiotics cause significant gut microbiome dysbiosis, particularly when administered orally. This contributes to antimicrobial resistance (AMR) and is associated with myriad health conditions. Novel drug delivery strategies that minimize gut exposure while maintaining therapeutic efficacy are urgently needed. This study aimed to evaluate whether a novel transdermal system could reduce gut microbiome disruption compared to oral delivery. Sprague-Dawley rats received a single tetracycline dose via oral gavage, IV injection, or hydrogel-forming microneedle patch. Faecal samples were collected longitudinally and analysed using 16 S rRNA gene sequencing. Oral tetracycline caused the greatest disruption to gut microbiota. Compared to the timepoint immediately prior to treatment (Day 5a), peak dysbiosis was observed at Day 7. The Firmicutes: Bacteroidetes ratio was significantly reduced following oral and IV tetracycline therapy, but not following microneedle administration. The most significant reductions in alpha and beta diversity at Day 7 were observed in the oral group. Differential abundance analysis showed oral treatment resulted in the highest number of depleted and enriched taxa. The microbiome-sparing effect of microneedle delivery was consistent across all analytical measures, offering a promising strategy to preserve host microbiome health. This minimally invasive approach represents a clinically viable alternative to oral and IV antibiotic administration.

Original languageEnglish
Number of pages11
JournalDrug Delivery and Translational Research
Early online date23 May 2026
DOIs
Publication statusE-pub ahead of print - 23 May 2026

Bibliographical note

Publisher Copyright:
© The Author(s) 2026.

Data Availability Statement

The datasets generated and/or analysed during the current study are available in the NCBI GenBank repository and are accessible under the accession numbers SAMN49895867-SAMN49896154 inclusive.

Funding

This work was supported by the Wellcome Trust through grant UNS39792

Keywords

  • Antibiotic
  • Drug delivery
  • Dysbiosis
  • Microbiome
  • Microneedle
  • Tetracycline

ASJC Scopus subject areas

  • Pharmaceutical Science

Fingerprint

Dive into the research topics of 'Preserving the gut microbiome: hydrogel-forming microneedle delivery of tetracycline reduces gut microbiome disruption compared to oral administration'. Together they form a unique fingerprint.

Cite this