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Reducing time to identification of aerobic bacteria and fastidious micro-organisms in positive blood cultures

机译:减少在阳性血液培养中鉴定需氧细菌和难养微生物的时间

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Rapid and early identification of micro-organisms in blood has a key role in the diagnosis of a febrile patient, in particular, in guiding the clinician to define the correct antibiotic therapy. This study presents a simple and very fast method with high performances for identifying bacteria by matrix-assisted laser desorption ionization-time of flight mass spectrometry (MALDI-TOF MS) after only 4h of incubation. We used early bacterial growth on PolyViteX chocolate agar plates inoculated with five drops of blood-broth medium deposited in the same point and spread with a sterile loop, followed by a direct transfer procedure on MALDI-TOF MS target slides without additional modification. Ninety-nine percentage of aerobic bacteria were correctly identified from 600 monomicrobial-positive blood cultures. This procedure allowed obtaining the correct identification of fastidious pathogens, such as Streptococcus pneumoniae, Neisseria meningitidis and Haemophilus influenzae that need complex nutritional and environmental requirements in order to grow. Compared to the traditional pathogen identification from blood cultures that takes over 24h, the reliability of results, rapid performance and suitability of this protocol allowed a more rapid administration of optimal antimicrobial treatment in the patients.
机译:快速和早期识别血液中的微生物在诊断高热患者中起着关键作用,特别是在指导临床医生确定正确的抗生素治疗中。这项研究提出了一种简单而快速的方法,该方法在仅孵育4小时后即可通过基质辅助激光解吸电离飞行时间质谱(MALDI-TOF MS)来鉴定细菌。我们在PolyViteX巧克力琼脂平板上进行了早期细菌生长,该琼脂平板接种了五滴在同一点沉积的血汤培养基,并以无菌环进行了铺展,然后直接在MALDI-TOF MS目标载玻片上进行了直接转移,无需进行其他修饰。从600种单微生物阳性血液培养物中正确鉴定出百分之九十九的好氧细菌。该程序可以正确识别需要进行复杂营养和环境培养才能生长的挑衅性病原体,例如肺炎链球菌,脑膜炎奈瑟氏球菌和流感嗜血杆菌。与传统的从血液培养中进行24小时以上的病原体鉴定相比,该方法的结果可靠性,快速的性能和适用性使患者能够更快地进行最佳的抗菌治疗。

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