首页> 外文期刊>Journal of Medical Microbiology: An Official Journal of the Pathological Society of Great Britain and Ireland >Slow growth of Burkholderia pseudomallei compared to other pathogens in an adapted blood culture system in Phnom Penh, Cambodia
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Slow growth of Burkholderia pseudomallei compared to other pathogens in an adapted blood culture system in Phnom Penh, Cambodia

机译:在柬埔寨金边的适应性血液培养系统中,与其他病原体相比,假伯克霍尔德菌的生长缓慢

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Purpose.Burkholderia pseudomallei is a key pathogen causing bloodstream infections at Sihanouk Hospital Center of Hope, Phnom Penh, Cambodia. Here, visual instead of automated detection of growth of commercial blood culture bottles is done. The present study assessed the performance of this system.Methodology. Blood culture sets, consisting of paired adult aerobic and anaerobic bottles (bioMérieux, FA FAN 259791 and FN FAN 252793) were incubated in a standard incubator for 7?days after reception. Each day, the bottle growth indicator was visually inspected for colour change indicating growth. Blind subculture was performed from the aerobic bottle at day 3.Results. From 2010 to 2015, 11 ?671 sets representing 10 ?389 suspected bloodstream infection episodes were documented. In 1058 (10.2? %) episodes, pathogens grew; they comprised Escherichia coli (31.7 %), Salmonella Paratyphi A (13.9 %), B. pseudomallei (8.5 %), Staphylococcus aureus (7.8 %) and Klebsiella pneumoniae (7.0 %). Blind subculture yielded 72 (4.1? %) pathogens, mostly (55/72, 76.4 %) B. pseudomallei. Cumulative proportions of growth at day 2 were as follows: E. coli: 85.0 %, Salmonella Paratyphi A: 85.0 %, K. pneumoniae: 76.3 ?% and S. aureus: 52.2 ?%; for B. pseudomallei, this was only 4.0 ?%, which increased to 70.1 ?% (70/99) at day 4 mainly by detection on blind subculture (55/99). Compared to the anaerobic bottles, aerobic bottles had a higher yield and a shorter time-to-detection, particularly for B. pseudomallei.Conclusions. Visual inspection for growth of commercial blood culture bottles in a low-resource setting provided satisfactory yield and time-to-detection. However, B. pseudomallei grew slowly and was mainly detected by blind subculture. The aerobic bottle outperformed the anaerobic bottle.
机译:目的。伪柬埔寨伯克霍尔德氏菌是导致血液感染的关键病原体,位于柬埔寨金边的西哈努克希望医院中心。在这里,用视觉代替自动检测商用血液培养瓶的生长。本研究评估了该系统的性能。接收后,由成对的需氧和厌氧瓶(bioMérieux,FA FAN 259791和FN FAN 252793)组成的血液培养装置在标准培养箱中培养7天。每天,肉眼检查瓶子的生长指示剂,以发现指示其生长的颜色变化。在第3天从需氧瓶进行盲传代培养。结果。从2010年到2015年,记录了11到671套,代表10到389个可疑的血液感染事件。在1058(10.2%)发作中,病原体增长;它们包括大肠杆菌(31.7%),副伤寒沙门氏菌A(13.9%),假苹果芽孢杆菌(8.5%),金黄色葡萄球菌(7.8%)和肺炎克雷伯菌(7.0%)。盲传代培养产生72(4.1%)的病原体,其中大部分(55/72,76.4%)的假苹果芽孢杆菌。在第2天的累计生长比例如下:大肠杆菌:85.0%,副伤寒沙门氏菌A:85.0%,肺炎克雷伯菌:76.3%,金黄色葡萄球菌:52.2%。对于假苹果芽孢杆菌,这一比例仅为4.0%,在第4天增加到70.1%(70/99),主要是通过盲传代培养(55/99)检测到的。与厌氧瓶相比,好氧瓶具有更高的产量和更短的检测时间,特别是对于假芽孢杆菌。目视检查在资源贫乏的情况下对商用血液培养瓶的生长情况,可以提供令人满意的产量和检测时间。然而,假芽孢杆菌生长缓慢,并且主要通过盲传代培养检测到。好氧瓶的性能优于厌氧瓶。

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