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溶酶体贮积病新生儿筛查中接近筛查临界值时检测不精密度的重要性

The Importance of Assay Imprecision near the Screen Cutoff for Newborn Screening of Lysosomal Storage Diseases.

作者信息

Robinson Bruce H, Gelb Michael H

机构信息

Department of Chemistry, University of Washington, Seattle, WA 98195, USA.

出版信息

Int J Neonatal Screen. 2019 Jun;5(2). doi: 10.3390/ijns5020017. Epub 2019 Mar 27.

Abstract

For newborn screening (NBS) of lysosomal storage diseases, programs measure enzymatic activities in dried blood spots (DBS) and, in most cases, act on samples where the measurement is below a specific cutoff value. The rate of false positives and negatives in any NBS program is of critical importance. The measured values across a population of newborns are governed by many factors, and in this article we focus on assay imprecision. Assay parameters including the Analytical Range and the Z-Factor have been discussed as a way to compare assay performance for NBS of lysosomal storage diseases. Here we show that these parameters are not rigorously connected to the rate of false positives and negatives. Rather, it is the assay imprecision near the screen cutoff that is the most important parameter that determines the rate of false positives and negatives. We develop the theoretical treatment of assay imprecision and how it is linked to screen performance. What emerges is a useful type of parametric plot that allows for rigorous assessment of the effect of assay imprecision on the rate of false positives and false negatives that is independent of the choice of screen cutoff value. Such plots are useful in choosing cutoff values. They also show that a high assay imprecision cannot be overcome by changing the cutoff value or by use of postanalysis, statistical tools. Given the importance of assay imprecision near the cutoff, we propose that quality control DBS are most useful if they span a range of analyte values near the cutoff. Our treatment is also appropriate for comparing the performance of multiple assay platforms that each measure the same quantity (i.e., the enzymatic activity in DBS). The analysis shows that it is always best to use the assay platform that gives the lowest imprecision near the cutoff.

摘要

对于溶酶体贮积病的新生儿筛查(NBS),相关项目会检测干血斑(DBS)中的酶活性,并且在大多数情况下,会对测量值低于特定临界值的样本采取措施。任何新生儿筛查项目中的假阳性和假阴性率都至关重要。新生儿群体中的测量值受多种因素影响,在本文中我们重点关注检测不精密度。作为比较溶酶体贮积病新生儿筛查检测性能的一种方式,已经讨论了包括分析范围和Z因子在内的检测参数。在此我们表明,这些参数与假阳性和假阴性率并无严格关联。相反,最关键的参数是接近筛查临界值时的检测不精密度,它决定了假阳性和假阴性率。我们对检测不精密度及其与筛查性能的关联进行了理论探讨。由此得出一种有用的参数图,它能够独立于筛查临界值的选择,对检测不精密度对假阳性和假阴性率的影响进行严格评估。这种图在选择临界值时很有用。它们还表明,通过改变临界值或使用分析后统计工具,无法克服高检测不精密度的问题。鉴于接近临界值时检测不精密度的重要性,我们建议,如果质量控制干血斑涵盖临界值附近一系列分析物值,那么它们将最有用。我们的探讨也适用于比较多个测量相同量(即干血斑中的酶活性)的检测平台的性能。分析表明,始终最好使用在临界值附近不精密度最低的检测平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3444/7510217/1407321eadfa/IJNS-05-00017-g001.jpg

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