首页> 外文期刊>Metrologia: International Journal of Scientific Metrology: = Internationale Zeitschrift fur Wissenschaftliche Metrologie: = Journal International de Metrologie Scientifique >Comprehensive certification of a testosterone calibration standard facilitating the investigation of charged aerosol detection for the quantification of impurities of related structure
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Comprehensive certification of a testosterone calibration standard facilitating the investigation of charged aerosol detection for the quantification of impurities of related structure

机译:综合认证睾酮校准标准,促进了对相关结构杂质量化的带电气溶胶检测的调查

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摘要

Testosterone, an analyte of interest to medical testing laboratories, was purity assigned using a mass balance approach, to afford a certified value of 986 +/- 3 mg g(-1) with established metrological traceability to the SI unit for mass (kg). The gas chromatography with flame ionisation detection (GC-FID) analysis identified the thermal degradation of testosterone as a source of bias, and confirmed the other four impurities to be steroids of closely related structure through co-elution studies. Combined with measures of water, solvent and non-volatile residue the total purity was in agreement with that determined by the complementary quantitative NMR spectroscopy, providing a high level of confidence that the certified value was bias free. This sample was then used to investigate the applicability of charged aerosol detection to the assessment of high accuracy, low uncertainty organic purity determination of steroids. The relative peak areas of testosterone and impurities varied depending on the concentration of the test solution, precluding the direct conversion of peak areas to an accurate realization of the relative mass fraction. One impurity, androst-4,6-diene-17 beta-ol-3-one, being overestimated by 155% compared to the GC-FID result. Charged aerosol detection (CM)) calibration curves established for testosterone and each impurity confirmed the detector response to vary by up to 30% at low levels (0-20 mu g g(-1)), thereby challenging the view that the CAD response is independent of structure. Despite this, using the calibration curve of testosterone to quantify each impurity delivered a reasonable estimate of organic purity. The variations in detector response for each analyte were used to assign a conservative uncertainty to the calculated value, offering a way forward when CAD is to be used for a less well defined material.
机译:睾酮是医学检测实验室感兴趣的分析物,是使用质量平衡方法分配的纯度,得到986 +/- 3mg G(-1)的认证值,其具有质量的Si单位的成立的计量可追溯性(KG) 。具有火焰离子化检测(GC-FID)分析的气相色谱标明睾酮作为偏差源的热降解,并通过共洗脱研究证实了其他四种杂质是与密切相关的结构的类固醇。结合水,溶剂和非挥发性残留物的措施总纯度与互补定量NMR光谱法决定的,提供了高度的信心,即认证价值是无偏见的。然后使用该样品来研究带电气溶胶检测的适用性对高精度评估,低不确定性有机纯度测定类固醇的测定。睾酮和杂质的相对峰面积根据试验溶液的浓度而变化,防止峰面积的直接转化为相对质量分数的精确实现。与GC-FIND结果相比,一个杂质,Androst-4,6-二烯-17β-OL-3-1,升高了155%。为睾酮和每种杂质建立的带电气溶胶检测(CM))校准曲线确认检测器响应在低水平下变化高达30%(0-20μg(-1)),从而挑战CAD响应的视图独立于结构。尽管如此,使用睾酮的校准曲线来量化每种杂质的合理估计有机纯度。每个分析物的检测器响应的变化用于为计算值分配保守的不确定性,当CAD用于用于较少明确的材料时,提供前进的方式。

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