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首页> 外文期刊>Transfusion: The Journal of the American Association of Blood Banks >The residual risk of sepsis: modeling the effect of concentration on bacterial detection in two-bottle culture systems and an estimation of false-negative culture rates.
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The residual risk of sepsis: modeling the effect of concentration on bacterial detection in two-bottle culture systems and an estimation of false-negative culture rates.

机译:败血症的残留风险:在两瓶培养系统中模拟浓度对细菌检测的影响并估计假阴性培养率。

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BACKGROUND: Septic reactions continue to be reported with culture-tested platelet (PLT) products, probably due to false-negative results associated with inadequate sampling of low-concentration bacteria. The mechanism of test failure was modeled and false-negative rates were estimated utilizing published data. STUDY DESIGN AND METHODS: The effect of concentration on the probability of sampling one or more viable bacteria in an 8-mL sample of a 300-mL product was determined. The ratio of single- versus dual-bottle-positive tests in repeated cultures utilizing two-bottle systems was used to assess mean bacterial concentrations and to predict false-negative tests. RESULTS: Published reports reveal a mean residual risk of sepsis of 2.3 per 10(5) products tested. Modeling the effect of concentration predicts that 50 and 95 percent of samples are detected at 0.09 and 0.36 CFU per mL for organisms that grow under both aerobic and anaerobic conditions, and suggest a 50 and 5 percent false-negative culture rateat these concentrations. Reanalysis of published studies documenting single-bottle growth of nonfastidious organisms indicate that low bacterial concentrations are frequently encountered and predict false-negative cultures in products contaminated with common bacteria at rates that varied from 4 to more than 75 percent. The model highlights the weakness of the AABB definition of false-positive culture results at low bacterial concentrations, especially for organisms that grow poorly in aerobic storage conditions. CONCLUSION: Continuing reports of septic reactions after transfusion of culture-tested apheresis PLTs, and frequent single-bottle-positive results when testing with two-bottle systems, suggest appreciable levels of false-negative results with a commercially available bacterial detection system (BacT/ALERT, bioMereiux) as implemented.
机译:背景:关于培养试验血小板(PLT)产品的脓毒症反应仍然有报道,这可能是由于与低浓度细菌采样不足有关的假阴性结果。对测试失败的机制进行了建模,并使用已发布的数据估算了假阴性率。研究设计和方法:确定浓度对从300mL产品的8mL样品中取样一种或多种活细菌的可能性的影响。在使用两瓶系统的重复培养中,单瓶和双瓶阳性试验的比率用于评估平均细菌浓度并预测假阴性试验。结果:已发表的报告显示,每测试10(5)个产品,脓毒症的平均残留风险为2.3。对浓度影响进行建模预测,对于在有氧和无氧条件下生长的生物,分别以0.09和0.36 CFU / mL的浓度检测到50%和95%的样品,并建议在这些浓度下假阴性培养率为50%和5%。对已发表研究进行的重新分析表明,单瓶非营养生物的生长表明,经常会遇到细菌浓度低的情况,并预测受普通细菌污染的产品中假阴性培养物的发生率在4%至75%以上。该模型强调了ABBB定义的低细菌浓度下的假阳性培养结果的缺点,特别是对于在有氧存储条件下生长不良的生物而言。结论:持续进行报告的输血经过培养测试的单采血液分离术PLTs,以及使用两瓶系统进行测试时频繁出现的单瓶阳性结果,表明使用市售细菌检测系统(BacT /已实施警报(bioMereiux)。

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