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Bactec 9240与Difco ESP血培养系统对延迟进样瓶中微生物检测的比较

Comparison of Bactec 9240 and Difco ESP blood culture systems for detection of organisms from vials whose entry was delayed.

作者信息

Chapin K, Lauderdale T L

机构信息

Department of Pathology, University of South Alabama, Mobile, USA.

出版信息

J Clin Microbiol. 1996 Mar;34(3):543-9. doi: 10.1128/jcm.34.3.543-549.1996.

Abstract

A comparison of the Bactec 9240 (Becton-Dickinson, Sparks, Md.) and Difco ESP (Difco Laboratories, Detroit, Mich.) instruments for the detection of organism growth from vials whose entry was delayed was evaluated. The instruments' capabilities for organism recovery, time to detection, rates of false-positive results, and numbers of vials in which growth was not detected were made by using seeded blood culture vial pairs and controls with and without delayed entry. Bactec 9240 and Difco ESP aerobic and anaerobic vials were inoculated with human blood and were seeded with organism growth from 18 species, including obligate aerobic, anaerobic, and facultative anaerobic organisms. Each organism was tested in triplicate at 0, 8, 24, 36, and 48 h and was incubated at both room temperature (RT) and 35 degrees C. Two separate phases of the study were performed, each with a different version of Bactec 9240 software. Overall, detection of growth in vials with delayed entry into either the Bactec 9240 or the Difco ESP instrument resulted in an increased total time to detection with incubation at both RT and 35 degrees C compared with the total time to detection for nondelayed vials. However, false-positive results and vials in which growth was not detected were minimal, and delayed entry did not require routine entry or exit subcultures for either system. Analysis of individual time points and incubation temperatures for the detection of all organisms suggested that Difco ESP vials delayed by up to 8 h may be incubated at 35 degrees C (100% detection) and vials delayed for longer than 8 h may remain at RT. Bactec 9240 vials may be incubated at 35 degrees C for up to 24 h with a minimal loss of detection (97.9% detection), and vials delayed for more than 24 h should remain at RT for optimal recovery of organism growth.

摘要

对Bactec 9240(美国马里兰州斯帕克斯市贝克顿-迪金森公司)和Difco ESP(美国密歇根州底特律市迪夫科实验室)这两种仪器进行了评估,以检测进样延迟的小瓶中的微生物生长情况。通过使用接种了细菌的血培养小瓶对以及有和没有延迟进样的对照,来评估这两种仪器在微生物回收能力、检测时间、假阳性结果率以及未检测到生长的小瓶数量方面的表现。将Bactec 9240和Difco ESP的需氧和厌氧小瓶接种人血,并接种来自18种细菌的微生物生长,这些细菌包括专性需氧菌、厌氧菌和兼性厌氧菌。每种细菌在0、8、24、36和48小时进行三次重复测试,并在室温(RT)和35摄氏度下孵育。研究分两个独立阶段进行,每个阶段使用不同版本的Bactec 9240软件。总体而言,与未延迟进样的小瓶相比,Bactec 9240或Difco ESP仪器中进样延迟的小瓶中检测到生长的总时间在RT和35摄氏度下孵育时均有所增加。然而,假阳性结果和未检测到生长的小瓶数量很少,并且延迟进样对于这两种系统都不需要常规的进样或出样传代培养。对所有细菌检测的各个时间点和孵育温度的分析表明,延迟8小时以内的Difco ESP小瓶可在35摄氏度下孵育(100%检测率),延迟超过8小时的小瓶可保持在RT。Bactec 9240小瓶可在35摄氏度下孵育长达24小时,检测率损失最小(97.9%检测率),延迟超过24小时的小瓶应保持在RT以实现微生物生长的最佳回收。

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