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首页|期刊导航|水生生物学报|在斑点叉尾(鱼回)血清中强力霉素对嗜水气单胞菌药动-药效模型研究

在斑点叉尾(鱼回)血清中强力霉素对嗜水气单胞菌药动-药效模型研究

艾晓辉 丁运敏 汪开毓 刘永涛 沈丹怡

水生生物学报2011,Vol.35Issue(6):893-899,7.
水生生物学报2011,Vol.35Issue(6):893-899,7.DOI:10.3724/SP.J.1035.2011.00893

在斑点叉尾(鱼回)血清中强力霉素对嗜水气单胞菌药动-药效模型研究

STUDY ON PHARMACOKINETICS/PHARMACODYNAMICS MODEL OF DOXYCYCLINE AGAINST AEROMONAS HYDROPHILA IN SERUM OF CHANNEL CATFISH EX VIVO

艾晓辉 1丁运敏 2汪开毓 2刘永涛 3沈丹怡1

作者信息

  • 1. 四川农业大学动物医学院,雅安625014
  • 2. 中国水产科学研究院长江水产研究所,荆州,434000
  • 3. 华中农业大学水产学院,武汉,430070
  • 折叠

摘要

Abstract

In order to determine reasonable dosage regimens of doxycycline in treating the haemorrhagic septicemia of channel catfish (Ictalurus punctatus), we integrated of pharmacokinetics in vivo and pharmacodynamics ex vivo to study the antibacterial activity of doxycycline against Aeromonas hydrophila in channel catfish serum.The minimum inhibitory concentration (MIC) and the minimum bactericidal concentration (MBC) of doxycycline against A hydrophila in extract broth and serum were measured by using the micro-dilution method, in which the final concentration of A. Hydrophila was 106 CFU/mL and the incubating temperature was 28℃ .The pharmacokinetics study of doxycycline was investigated after single oral gavage administration in channel catfish at water temperature of (28±1)℃. Blood samples were collected at every different intervals before and after administration, and then made them to be plasma and serum. The concentrations of doxycycline in channel catfish plasma were determined by means of Ultra Performance Liquid Chromatography (UPLC) with UV detection method. The plasma samples were extracted with perchloric acid, then the extracts were centrifuged and the supernatant was sent to UPLC-UV after purified by 0.22 μm filter. 5 uL extract was separated on a reversed phase C18 reversion chromatographic column (1.7 μrn, 2.1 mmx50 mm) at 45°C, which was then eluted with 0.01 mol/L sodium dihydrogen phosphate-acetonitrile (4:1) at a flow of 0.300 mL/min. The UV detection was at λ350nm..Pharmacokinetic parameters were analyzed with the pharmacokinetic computer program 3P97.We learnt the pharmacodynamics effect of doxycycline by detecting the number of A. Hydrophila in channel catfish serum sampled at different times. Pharmacodynamics parameters were analyzed with the pharmacodynamic computer program kinetica 4.4.The Pharmacokinetics/pharmacodynamics model parameters were calculated with the MICserum and pharmacokinetic in vivo parameters.The accurate MIC of doxycycline against A. Hydrophila in broth and serum were both 2.0 μg/mL, which revealed that doxycycline had high bactericidal activity to A. Hydrophila in different mediums. Doxycycline was absorbed fast and eliminated slowly after oral administration (20 mg/kg), the Cmax was 1.72 μg/mL at 2.57h, elimination half-life [T(1/2)β] was 38.63h. A. Hydrophila were killed obviously and inhibited for only 3h by doxycycline in 1-8h serum, and A. Hydrophila regrew after about 6h. However, the doxycycline in 4h serum could kill A. Hydrophila to 103 level and continuously inhibited for 12h. The doxycycline in serum collected after 12h could hardly kill A. Hydrophila, and A. Hydrophila quickly regrew to 10 -10 level. Half-effective concentration parameter (EC50) was 16.95h, which meant doxycycline produced 50% of the maximal antibacterial effect when the concentration of doxycycline was 1.41 u.g/mL in serum. The PK-PD model parameter Cmax/MICsemm was 0.86,AUC0→24h /MICserutn was 20.57h. We estimated the optimal dose ranged from 10.68 to 41.42 mg/kg per kilo of body weight through the Inhibitory Effect Sigmoid Emax. It concluded that when doxycycline was employed to treat the haemorrhagic septicemia of channel catfish, dosage regime should be fed with mixed feed which contained doxycycline 41.42 mg per kilo of body weight, once a day. When doxycycline was employed to prevent the disease, dosage regime should be fed mixed feed which contained doxycycline 10.68 mg per kilo of body weight, once a day.

关键词

强力霉素/嗜水气单胞菌/药动-药效同步模型/斑点叉尾(鱼回)/半体内

Key words

Doxycycline/ Aeromonas hydrophila/ Pharmacokinetics/pharmacodynamics model/ Channel catfish/ ex vivo

分类

农业科技

引用本文复制引用

艾晓辉,丁运敏,汪开毓,刘永涛,沈丹怡..在斑点叉尾(鱼回)血清中强力霉素对嗜水气单胞菌药动-药效模型研究[J].水生生物学报,2011,35(6):893-899,7.

基金项目

农业部公益性行业科研专项 "淡水鱼类出血性疾病综合防治技术集成与示范" (200803013)资助 (200803013)

水生生物学报

OA北大核心CSCDCSTPCD

1000-3207

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