首页> 外文期刊>BMC Veterinary Research >Effects of ceftiofur treatment on the susceptibility of commensal porcine E.coli – comparison between treated and untreated animals housed in the same stable
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Effects of ceftiofur treatment on the susceptibility of commensal porcine E.coli – comparison between treated and untreated animals housed in the same stable

机译:头孢噻呋治疗对普通猪大肠杆菌敏感性的影响–饲养在同一个马stable中的已处理动物与未处理动物之间的比较

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Background Healthy farm animals have been found to act as a reservoir of extended-spectrum β-lactamase (ESBL)-producing Escherichia coli (E. coli). Therefore, the objective of the study was to determine the input of antimicrobial active ceftiofur metabolites in the stable via faeces and urine after intramuscular administration of the drug to pigs and the elucidation of the Escherichia coli ESBL resistance pattern of treated and untreated pigs housed in the same barn during therapy. Methods For determination of the minimal inhibitory concentration (MIC) the method of microdilutionaccording to the recommended procedure of the Clinical and Laboratory Standards Institute was used. Inaddition to that, a qualitative determination was performed by agar dilution. Unsusceptible E. coli speciesselected via agar dilution with cefotaxime were confirmed by MALDI-TOF and ESBL encoding genes wereidentified by PCR. The amounts of ceftiofur measured as desfuroylceftiofur (DFC) in the different probes (plasma, urine, faeces and dust) were analysed by UPLC-MS/MS. Results In a first experiment two groups of pigs (6 animals per group) were housed in the same barn in two separated boxes. One group (group B) were treated with ceftiofur according to the licence (3?mg/kg administered intramuscularly (i.m.) on three consecutive days, day 1–3). During a second treatment period (day 29–31) an increased rate of ESBL resistant E. coli was detectable in these treated pigs and in the air of the stable. Moreover, the second group of animals (group A) formerly untreated but housed for the whole period in the same stable as the treated animals revealed increased resistance rates during their first treatment (day 45–47) with ceftiofur. In order to investigate the environmental input of ceftiofur during therapy and to simulate oral uptake of ceftiofur residues from the air of the stable a second set of experiments were performed. Pigs (6 animals) were treated with an interval of 2?weeks for 3?days with different doses of ceftiofur (3?mg/kg, 1?mg/kg and 0.3?mg/kg i.m.) as well as with 3?mg/kg per os) and the renal and biliary excretion of ceftiofur as its active metabolite were measured in comparison to the plasma levels. In addition to that, probes of the sedimentation dust and the air of the stable were analysed for drug residues. Conclusion The present study shows that treatment of several animals in a stable with ceftiofur influences the resistance pattern of intestinal Escherichia coli of the treated as well as untreated animals housed in the same stable. During therapy with the drug which was administered by injection according to the licence we detected nameable amounts of ceftiofur and its active metabolites in the dust and air of the stable.
机译:背景技术已经发现健康的家畜充当产生广谱β-内酰胺酶(ESBL)的大肠杆菌(E.coli)的贮存库。因此,本研究的目的是确定对猪进行肌肉内给药后,通过粪便和尿液将抗菌活性头孢噻呋代谢产物输入粪便中的方法,以及阐明饲养在猪场中的已处理和未处理猪的大肠杆菌ESBL耐药模式。在治疗期间使用同一谷仓。方法为了确定最小抑菌浓度(MIC),使用了根据临床和实验室标准协会推荐的程序进行的微量稀释方法。除此之外,通过琼脂稀释进行定性测定。通过MALDI-TOF证实了通过琼脂稀释用头孢噻肟选择的不敏感的大肠杆菌种类,并通过PCR鉴定了ESBL编码基因。通过UPLC-MS / MS分析了不同探针(血浆,尿液,粪便和灰尘)中的头孢呋喃(DFC)含量。结果在第一个实验中,将两组猪(每组6只动物)分别放在两个单独的盒子中。一组(B组)根据许可证(头三至三天连续3天肌肉注射(上午)给予头孢噻呋)治疗。在第二个治疗期间(第29-31天),在这些处理过的猪和马the的空气中检出ESBL耐药性大肠杆菌的比率增加。此外,第二组动物(A组)以前未经治疗,但在整个时期内都与被治疗的动物保持稳定,因此在头孢噻呋的第一个治疗(第45-47天)中显示出抗药性增加。为了研究在治疗过程中头孢噻呋的环境输入并模拟从马from的空气中口服头孢噻呋残留物,进行了第二组实验。用不同剂量的头孢噻呋(3?mg / kg,1?mg / kg和0.3?mg / kg im)以及3?mg的猪(6只动物)每2周间隔治疗3天。 / kg / os)和头孢噻呋作为其活性代谢产物的肾脏和胆汁排泄物,与血浆水平进行了比较。除此之外,还分析了沉积尘埃和马the中的空气中的探针是否有药物残留。结论本研究表明,用头孢噻呋在动物笼中处理数只动物会影响处理后的动物以及未饲养在相同动物笼中的动物的肠道大肠杆菌耐药模式。在根据许可通过注射给药的药物治疗期间,我们在马detected的灰尘和空气中检测到可观数量的头孢噻呋及其活性代谢物。

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