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Pharmacokinetic and pharmacodynamic integration of enrofloxacin against Salmonella Enteritidis after administering to broiler chicken by per-oral and intravenous routes

机译:用口服和静脉内途径向肉鸡鸡肉饲喂沙门氏菌肠杆菌的药代动力学和药效学相一体化

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It is crucial to optimize the dose of fluoroquinolones to avoid antibiotic resistance and to attain clinical success. We undertook this study to optimize the dose of enrofloxacin against Salmonella enterica subsp. enterica serovar Enteritidis (S. Enteritidis) in chicken by assessing its pharmacokinetic/pharmacodynamic (PK/PD) indices. The antibacterial activities of enrofloxacin against S. Enteritidis were evaluated. After administering 10 mg/kg body weight (b.w.) of enrofloxacin to broiler chickens of both sexes by intravenous (IV) and peroral (PO) routes, blood samples were drawn at different intervals and enrofloxacin concentrations in plasma were determined. PK/PD indices were calculated by integrating the PK and PD data. The elimination half-lives (T-1/2), time required to reach peak concentration (T-max), peak concentration (C-max), and area under curve (AUC) after administering enrofloxacin by PO and IV routes were 25.84 +/- 1.40 h, 0.65 +/- 0.12 h, 3.82 +/- 0.59 mu g/mL, and 20.84 +/- 5.0 mu g.h/mL, and 12.84 +/- 1.4 h, 0.22 +/- 0.1 h, 6.74 +/- 0.03 mu g/mL, and 21.13 +/- 0.9 mu g.h/mL, respectively. The bioavailability of enrofloxacin was 98.6% +/- 8.9% after PO administration. The MICs of enrofloxacin were 0.0625-1 mu g/mL against S. Enteritidis strains, and the MIC50 was 0.50 mu g/mL. The C-max/MIC50 were 7.64 +/- 0.2 and 13.48 +/- 0.7 and the 24 h AUC/MIC50 were 41.68 +/- 0.1 and 42.26 +/- 0.3 after administering the drug through PO and IV routes, respectively. The data in this study indicate that the application of 50 mg/kg b.w. of enrofloxacin to chicken through PO and IV routes with a dosing interval of 24 h can effectively cure S. Enteritidis infection, indicating the need for a 5-fold increase in the recommended dosage of enrofloxacin in chicken.
机译:优化氟代喹啉剂量以避免抗生素耐药性并获得临床成功至关重要。我们进行了该研究以优化对沙门氏菌肠胚胎的巢氧基辛的剂量。通过评估其药代动力学/药物动力学(PK / PD)指数,在鸡肉中肠道肠肠肠炎虫肠炎肠道。评价瑞氧氟沙星对S.肠炎酸的抗菌活性。通过静脉内(IV)和PO)和PORORAL(PO)途径向富含血红酸的富含氧氟沙星(B.W.)对两性(PO)途径进行肉鸡后,以不同的间隔绘制血液样品,并测定血浆中的苯甲酰辛浓度。通过集成PK和PD数据来计算PK / PD指数。通过PO和IV途径施用苯甲烷钠(T-MAX),达到峰浓度(T-MAX),峰值浓度(C-MAX)和区域所需的时间,达到峰浓度(T-MAX),峰值(AUC)所需的时间为25.84 +/- 1.40 h,0.65 +/- 0.12 h,3.82 +/- 0.59 mu g / ml,20.84 +/- 5.0 mu gh / ml,12.84 +/- 1.4 h,0.22 +/- 0.1 h,6.74 +/-0.03μg/ ml,分别为21.13 +/-0.9μg/ ml。在PO施用后,富含氧氟沙星的生物利用度为98.6%+/- 8.9%。富含氧氟沙星的麦克风为0.0625-1μg/ ml对肠炎肠菌株,MIC50为0.50μg/ ml。 C-MAX / MIC50分别为7.64 +/- 0.2和13.48 +/- 0.7,24小时AUC / MIC50分别通过PO和IV路线施用药物后41.68 +/- 0.1和42.26 +/- 0.3。本研究中的数据表明,50mg / kg B.W.的应用通过PO和IV途径的鸡酰氧烷通过PO和IV途径24小时可以有效地治愈S. EnterItidis感染,表明需要在鸡中推荐的富含氧氟沙星剂量增加5倍。

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