Pharmacokinetic/pharmacodynamic evaluation of gamithromycin against rabbit pasteurellosis

Author:

Wei Xin-Yi,Zhang Jing,Zhang Yin,Fu Wen-Zhen,Zhong Long-Gen,Pan Yi-Duo,Sun Jian,Liao Xiao-Ping,Liu Ya-Hong,Zhou Yu-Feng

Abstract

Abstract Background Gamithromycin is an effective therapy for bovine and swine respiratory diseases but not utilized for rabbits. Given its potent activity against respiratory pathogens, we sought to determine the pharmacokinetic profiles, antimicrobial activity and target pharmacokinetic/pharmacodynamic (PK/PD) exposures associated with therapeutic effect of gamithromycin against Pasteurella multocida in rabbits. Results Gamithromycin showed favorable PK properties in rabbits, including high subcutaneous bioavailability (86.7 ± 10.7%) and low plasma protein binding (18.5–31.9%). PK analysis identified a mean plasma peak concentration (Cmax) of 1.64 ± 0.86 mg/L and terminal half-life (T1/2) of 31.5 ± 5.74 h after subcutaneous injection. For P. multocida, short post-antibiotic effects (PAE) (1.1–5.3 h) and post-antibiotic sub-inhibitory concentration effects (PA-SME) (6.6–9.1 h) were observed after exposure to gamithromycin at 1 to 4× minimal inhibitory concentration (MIC). Gamithromycin demonstrated concentration-dependent bactericidal activity and the PK/PD index area under the concentration-time curve over 24 h (AUC24h)/MIC correlated well with efficacy (R2 > 0.99). The plasma AUC24h/MIC ratios of gamithromycin associated with the bacteriostatic, bactericidal and bacterial eradication against P. multocida were 15.4, 24.9 and 27.8 h in rabbits, respectively. Conclusions Subcutaneous administration of 6 mg/kg gamithromycin reached therapeutic concentrations in rabbit plasma against P. multocida. The PK/PD ratios determined herein in combination with ex vivo activity and favorable rabbit PK indicate that gamithromycin may be used for the treatment of rabbit pasteurellosis.

Funder

National Key Research and Development Program of China

Local Innovative and Research Teams Project of Guangdong Pearl River Talents Program

Double First-Class Discipline Promotion Project

Innovation Team Project of Guangdong University

Foundation for Innovative Research Groups of the National Natural Science Foundation of China

National Natural Science Foundation of China

Laboratory of Lingnan Modern Agriculture Project

Publisher

Springer Science and Business Media LLC

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