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LC-MS/MS 定量检测血清中的利巴韦林及鉴定内源性等质量离子干扰。

LC-MS/MS quantitation of ribavirin in serum and identification of endogenous isobaric interferences.

机构信息

Department of Laboratory Medicine and Pathology, Mayo Clinic, Rochester, MN 55905, USA.

出版信息

Clin Chim Acta. 2011 Nov 20;412(23-24):2332-5. doi: 10.1016/j.cca.2011.07.016. Epub 2011 Aug 3.

Abstract

BACKGROUND

Ribavirin is a nucleoside analog used in treatment of chronic hepatitis C. It is associated with severe, dose-dependent toxicities, including hemolytic anemia. To facilitate therapeutic drug monitoring, a liquid chromatography-tandem mass spectrometry method was validated for quantitation of ribavirin in serum.

METHODS

After protein precipitation, ribavirin is quantitated using a (13)C(5)-ribavirin internal standard, on a Hypercarb analytical column designed for retention of polar analytes.

RESULTS

The analytical method shows excellent precision, sensitivity, and specificity. In vitro drug stability was also assessed. Interestingly, endogenous isobaric compounds were noted in both human and bovine serum; these could be chromatographically separated from the ribavirin peak. Addition of exogenous uridine and cytosine increases the size of the isobaric peaks, suggesting that these compounds are the source of the endogenous interference.

CONCLUSIONS

This method uses mass spectrometric transitions that have been used in other published methods, but also separates ribavirin from isobaric peaks that were not described. These peaks were determined to be endogenous nucleosides. Laboratories quantitating ribavirin in biological matrices should be aware of the potential for isobaric interferences, and take steps to chromatographically separate them from the ribavirin peak for accurate quantitation.

摘要

背景

利巴韦林是一种用于治疗慢性丙型肝炎的核苷类似物。它与严重的、剂量依赖性的毒性有关,包括溶血性贫血。为了便于治疗药物监测,验证了一种液相色谱-串联质谱法,用于定量血清中的利巴韦林。

方法

在蛋白质沉淀后,使用(13)C(5)-利巴韦林内标,在专门设计用于保留极性分析物的 Hypercarb 分析柱上定量利巴韦林。

结果

分析方法显示出极好的精密度、灵敏度和特异性。还评估了体外药物稳定性。有趣的是,在人血清和牛血清中都发现了内源性等排化合物;这些化合物可以从利巴韦林峰中分离出来。添加外源性尿苷和胞嘧啶会增加等排峰的大小,表明这些化合物是内源性干扰的来源。

结论

该方法使用了已在其他已发表方法中使用的质谱转换,但也将利巴韦林与未描述的等排峰分离。这些峰被确定为内源性核苷。定量生物基质中利巴韦林的实验室应意识到存在等排干扰的可能性,并采取措施将它们与利巴韦林峰分离,以进行准确的定量。

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