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Peer-reviewed veterinary case report

Chlorogenic acid attenuates tet (X)-mediated doxycycline resistance of.

Journal:
Frontiers in veterinary science
Year:
2024
Authors:
Han, Yuwen et al.
Affiliation:
College of Veterinary Medicine · China

Abstract

INTRODUCTION: The increasing resistance ofhas posed a significant threat to the poultry industry in recent years. The tet gene is the primary determinant of tetracycline resistance in numerous bacteria, and the enzyme modification gene tet(X) is predominantly detected in tetracycline-resistantstrains. METHODS: In this study, we evaluated the susceptibility of both the standard strain and clinical isolates ofto doxycycline. And the expression levels of tet(X), tet(A), and tet(O) genes were detected. To assess drug susceptibility, shuttle plasmids were constructed to transfer the tet(X) gene into the standard strain offollowed by treatment with chlorogenic acid. RESULTS AND DISCUSSION: The results revealed that the minimum inhibitory concentration of doxycycline for the standard strain was 0.25μg/mL, whereas it exceeded 8μg/mL for the clinical isolates. Furthermore, there was a significant upregulation observed in expression levels of tet(X), tet(A), and tet(O) genes among induced strains. Interestingly, when transferring the tet(X) gene into the standard strain, its sensitivity to doxycycline decreased; however, MIC values for chlorogenic acid remained consistent between both standard and drug-resistant strains of. Moreover, we made a surprising discovery that screening passage with chlorogenic acid resulted in increased sensitivity ofto doxycycline. Further analysis demonstrated a reversal in expression trends among three differentially expressed genes within induced drug resistance group after intervention with chlorogenic acid. The main objective behind this study is to investigate both killing effect exerted by chlorogenic acid on drug-resistantas well as its regulatory impact on drug resistance genes. This will provide novel insights and theoretical basis towards development of chlorogenic acid as a promising drug for treatment and control of drug resistance in.

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Original publication: https://pubmed.ncbi.nlm.nih.gov/38764851/