National Reference Laboratory of Veterinary Drug Residues (HZAU) and National Safety Laboratory of Veterinary Drug (HZAU), Wuhan, China.
MOA Key Laboratory for Detection of Veterinary Drug Residues, Wuhan, China.
PLoS Comput Biol. 2023 Aug 16;19(8):e1011331. doi: 10.1371/journal.pcbi.1011331. eCollection 2023 Aug.
Cefquinome is widely used to treat respiratory tract diseases of swine. While extra-label dosages of cefquinome could improve clinical efficacy, they might lead to excessively high residues in animal-derived food. In this study, a physiologically based pharmacokinetic (PBPK) model was calibrated based on the published data and a microdialysis experiment to assess the dosage efficiency and food safety. For the microdialysis experiment, in vitro/in vivo relative recovery and concentration-time curves of cefquinome in the lung interstitium were investigated. This PBPK model is available to predict the drug concentrations in the muscle, kidney, liver, plasma, and lung interstitial fluid. Concentration-time curves of 1000 virtual animals in different tissues were simulated by applying sensitivity and Monte Carlo analyses. By integrating pharmacokinetic/pharmacodynamic target parameters, cefquinome delivered at 3-5 mg/kg twice daily is advised for the effective control of respiratory tract infections of nursery pig, which the bodyweight is around 25 kg. Based on the predicted cefquinome concentrations in edible tissues, the withdrawal interval is 2 and 3 days for label and the extra-label doses, respectively. This study provides a useful tool to optimize the dosage regimen of cefquinome against respiratory tract infections and predicts the concentration of cefquinome residues in edible tissues. This information would be helpful to improve the food safety and guide rational drug usage.
头孢喹肟被广泛用于治疗猪的呼吸道疾病。虽然头孢喹肟的超说明书剂量可以提高临床疗效,但可能导致动物源性食品中残留过高。本研究基于已发表的数据和微透析实验,建立了一个生理基于药代动力学(PBPK)模型,以评估剂量效率和食品安全。在微透析实验中,研究了头孢喹肟在肺间质中的体外/体内相对回收率和浓度-时间曲线。该 PBPK 模型可用于预测肌肉、肾脏、肝脏、血浆和肺间质液中的药物浓度。通过应用敏感性和蒙特卡罗分析,模拟了 1000 只不同组织的虚拟动物的浓度-时间曲线。通过整合药代动力学/药效学靶参数,建议对于体重约为 25 公斤的仔猪呼吸道感染,每天两次给予 3-5mg/kg 的头孢喹肟可以有效控制感染。基于可食用组织中预测的头孢喹肟浓度,标签剂量和超说明书剂量的停药期分别为 2 天和 3 天。本研究为优化头孢喹肟治疗呼吸道感染的剂量方案提供了有用的工具,并预测了可食用组织中头孢喹肟残留的浓度。这些信息有助于提高食品安全并指导合理用药。