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Identification and Determination of Antibiotic Susceptibilities of Brucella Strains Isolated from Patients in Van Turkey by Conventional and Molecular Methods

机译:通过常规和分子方法鉴定和确定土耳其范城患者布鲁氏菌菌株的抗生素敏感性

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摘要

>Purpose: Brucellosis is a worldwide zoonotic disease and still constitutes a major public health problem. In this study, we aimed to identify biovars of Brucella strains isolated from clinical specimens taken from brucellosis patients from the Eastern Anatolia region as well determine the susceptibility of these isolates to tigecycline and azithromycin, drugs that may serve as alternatives to the conventional drugs used in the therapy.>Materials and methods: Seventy-five Brucella spp. isolates were included in the study. All strains were identified by both conventional and molecular methods. Brucella Multiplex PCR kit (FC-Biotech, Code: 0301, Turkey) and B. melitensis biovar typing PCR kit (FC-Biotech, Code: 0302, Turkey) were used for molecular typing. Antimicrobial susceptibilities of all strains were determined by E-tests.>Results: By conventional biotyping, 73 strains were identified as B. melitensis biovar 3 and two strains as B. abortus biovar 3. Molecular typing results were compatible with conventional methods. The MIC50 and MIC90 values of doxycycline were 0.047 and 0.094; tigecycline 0.094 and 0.125; trimethoprim/sulfamethoxazole 0.064 and 0.19; ciprofloxacin 0.19 for both; streptomycin 0.75 and 1; rifampin 1 and 2 and azithromycin 4 and 8. According to the MIC values, doxycycline was found to be the most effective antibiotic, followed by tigecycline, trimethoprim-sulfamethoxazole and ciprofloxacin.>Conclusion: Currently recommended antibiotics for the treatment of brucellosis such as doxycycline, rifampin, streptomycin, trimethoprim-sulfamethoxazole and ciprofloxacin were found to be still effective. While our results showed that tigecycline can be used an alternative agent in the treatment of brucellosis, azithromycin has not been confirmed as an appropriate agent for the treatment.
机译:>目的:布鲁氏菌病是一种世界范围的人畜共患病,仍然构成主要的公共卫生问题。在这项研究中,我们旨在鉴定从安那托利亚东部地区布鲁氏菌病患者的临床标本中分离出的布鲁氏菌菌株的生物变种,并确定这些分离物对替加环素和阿奇霉素的敏感性,这些药物可以替代传统药物用于>材料和方法:七十五个布鲁氏菌属。分离株包括在研究中。通过常规方法和分子方法都鉴定了所有菌株。使用布鲁氏菌多重PCR试剂盒(FC-Biotech,代码:0301,土耳其)和B.melitensis生物变型PCR试剂盒(FC-Biotech,代码:0302,土耳其)进行分子分型。 >结果:通过常规生物分型,确定了73株菌株为B. melitensis biovar 3,两个菌株为B.abortus biovar3。分子分型结果兼容用常规方法。强力霉素的MIC50和MIC90值为0.047和0.094;替加环素0.094和0.125;甲氧苄啶/磺胺甲恶唑0.064和0.19;环丙沙星均为0.19;链霉素0.75和1;利福平1和2以及阿奇霉素4和8。根据MIC值,发现强力霉素是最有效的抗生素,其次是替加环素,甲氧苄氨嘧啶,磺胺甲恶唑和环丙沙星。>结论:目前推荐的抗生素用于已发现治疗布氏杆菌病(例如强力霉素,利福平,链霉素,甲氧苄氨嘧啶-磺胺甲基异恶唑和环丙沙星)仍然有效。尽管我们的研究结果表明,替加环素可以用于治疗布鲁氏菌病,但阿奇霉素尚未被确认为治疗该病的合适药物。

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