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全血中抗生素的快速测定。

Fast determination of antibiotics in whole blood.

机构信息

Key Laboratory of Environment and Genes Related to Diseases, Ministry of Education, Medical School of Xi'an Jiaotong University, Xi'an, China.

出版信息

Clin Microbiol Infect. 2013 Sep;19(9):869-74. doi: 10.1111/1469-0691.12074. Epub 2012 Nov 27.

Abstract

There is a need for analytical methods capable of monitoring blood antibiotic levels in real time. Here we present a method for quantifying antibiotic levels in whole blood that does not require any sample pretreatment. The tests employ the enzyme penicillinase to assay for penicillin G, penicillin V and ampicillin using a flow-injected biosensor, the Enzyme Thermistor. Optimal flow rates, sample volumes and pH were determined to be 0.5 mL/min, 100 μL and 7.0, respectively. Analysis of the antibiotics diluted in buffer gave a linear range of 0.17-5.0 mM. Calibration curves prepared using blood spiked with the antibiotics gave a linear range of 0.17-2.0 mM. Linear regression values for all of the calibration curves were 0.998 or higher. Assay cycle time was 5 min. The relative standard deviation value for 100 determinations of a mock blood sample spiked with penicillin G was 6.71%. Despite the elimination of sample pretreatment, no detectable clogging or signal drift was observed. The assay provides a fast, simple, reliable analytical method for determining antibiotic concentrations in blood without the need for any sample pretreatment. This is an important first step towards developing a device capable of real-time monitoring of antibiotic levels in whole blood. The technology has the potential to significantly improve the outcomes of patients undergoing critical care.

摘要

需要能够实时监测血液中抗生素水平的分析方法。在这里,我们提出了一种无需任何样品预处理即可定量测定全血中抗生素水平的方法。该测试采用青霉素酶来检测青霉素 G、青霉素 V 和氨苄西林,使用的是一种流动注射生物传感器,即酶热敏电阻。确定了最佳流速、样品体积和 pH 值分别为 0.5 mL/min、100 μL 和 7.0。在缓冲液中稀释的抗生素的分析给出了 0.17-5.0 mM 的线性范围。使用血液中添加抗生素制备的校准曲线给出了 0.17-2.0 mM 的线性范围。所有校准曲线的线性回归值均高于 0.998。分析周期时间为 5 分钟。用青霉素 G 模拟血样 100 次测定的相对标准偏差值为 6.71%。尽管消除了样品预处理,但未观察到可检测的堵塞或信号漂移。该测定法提供了一种快速、简单、可靠的分析方法,可用于测定血液中的抗生素浓度,而无需任何样品预处理。这是朝着开发能够实时监测全血中抗生素水平的设备迈出的重要第一步。该技术有可能显著改善接受重症监护的患者的治疗效果。

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