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首页> 外文期刊>European journal of clinical microbiology and infectious diseases: Official publication of the European Society of Clinical Microbiology >Automated direct screening for resistance of Gram-negative blood cultures using the BD Kiestra WorkCell
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Automated direct screening for resistance of Gram-negative blood cultures using the BD Kiestra WorkCell

机译:使用BD Kiestra Workcell自动直接筛选革兰阴性血液培养的抗性

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Early detection of resistance in sepsis due to Gram-negative organisms may lead to improved outcomes by reducing the time to effective antibiotic therapy. Traditional methods of resistance detection require incubation times of 18 to 48 h to detect resistance. We have utilised automated specimen processing, digital imaging and zone size measurements in conjunction with direct disc susceptibility testing to develop a method for the rapid screening of Gram-negative blood culture isolates for resistance. Positive clinical blood cultures with Gram-negative organisms were prospectively identified and additional resistant mock specimens were prepared. Broth was plated and antibiotic-impregnated discs (ampicillin, ceftriaxone, piperacillin-tazobactam, meropenem, ciprofloxacin, gentamicin) were added. Plates were incubated, digitally imaged and zone sizes were measured using the BD Kiestra WorkCell laboratory automation system. Minimum, clinically useful, incubation times and optimised zone size cut-offs for resistance detection were determined. We included 187 blood cultures in the study. At 5 h of incubation, 90% of plates yielded interpretable results. Using optimised zone size cut-offs, the sensitivity for resistance detection ranged from 87 to 100%, while the specificity ranged from 84.7 to 100%. The sensitivity and specificity for piperacillin-tazobactam resistance detection was consistently worse than for the other agents. Automated direct disc susceptibility screening is a rapid and sensitive tool for resistance detection in Gram-negative isolates from blood cultures for most of the agents tested.
机译:由于革兰氏阴性生物而导致脓毒症抗性的早期检测可能导致通过减少有效抗生素治疗的时间来改善结果。传统的电阻检测方法需要孵育18至48小时以检测电阻。我们利用了自动试样加工,数字成像和区域尺寸测量与直接盘敏感性测试结合使用,以开发一种用于快速筛选革兰阴性血液培养物的方法的抵抗力。预先确定具有革兰阴性生物的阳性临床血液培养物,并制备额外的抗腐蚀样品。加入肉汤,加入抗生素浸渍的椎间盘(Ampicillin,Ceftriaxone,Piperacillin-Tazobactam,Meropenem,Ciprofloxacin,庆大霉素)。将板孵育,使用BD Kiestra Workcell实验室自动化系统测量数字成像和区域尺寸。确定最低,临床有用,孵化时间和优化的电阻检测截止截止截止。我们在研究中包括187份血液文化。在孵育5小时,& 90%的板材产生可解释的结果。使用优化区域尺寸截止值,电阻检测的灵敏度范围为87至100%,特异性范围为84.7至100%。哌啶蓟素-TaZobactam电阻检测的敏感性和特异性始终比其他药剂更差。自动化直接盘敏感性筛选是一种快速敏感的抗血液培养物的抗性检测工具,用于从血液培养物中测试的大部分药物。

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