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Mitigation of microtiter plate positioning effects using a block randomization scheme

机译:使用块随机分配方案减轻微量滴定板定位的影响

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Microtiter plate-based assays are a common tool in biochemical and analytical labs. Despite widespread use, results generated in microtiter plate-based assays are often impacted by positional bias, in which variability in raw signal measurements are not uniform in all regions of the plate. Since small positional effects can disproportionately affect assay results and the reliability of the data, an effective mitigation strategy is critical. Commonly used mitigation strategies include avoiding the use of outer regions of the plate, replicating treatments within and between plates, and randomizing placement of treatments within and between plates. These strategies often introduce complexity while only partially mitigating positional effects and significantly reducing assay throughput. To reduce positional bias more effectively, we developed a novel block-randomized plate layout. Unlike a completely randomized layout, the block randomization scheme coordinates placement of specific curve regions into pre-defined blocks on the plate based on key experimental findings and assumptions about the distribution of assay bias and variability. Using the block-randomized plate layout, we demonstrated a mean bias reduction of relative potency estimates from 6.3 to 1.1 % in a sandwich enzyme-linked immunosorbent assay (ELISA) used for vaccine release. In addition, imprecision in relative potency estimates decreased from 10.2 to 4.5 % CV. Using simulations, we also demonstrated the impact of assay bias on measurement confidence and its relation to replication strategies. We outlined the underlying concepts of the block randomization scheme to potentially apply to other microtiter-based assays.
机译:基于微量滴定板的测定法是生化和分析实验室中的常用工具。尽管已得到广泛使用,但基于微量滴定板的分析中产生的结果通常会受到位置偏差的影响,其中原始信号测量的差异在板的所有区域均不均匀。由于较小的位置影响会严重影响测定结果和数据的可靠性,因此有效的缓解策略至关重要。常用的缓解策略包括避免使用板的外部区域,在板内和板之间复制处理,以及将处理随机放置在板内和板之间。这些策略通常会带来复杂性,同时只能部分缓解位置影响并显着降低分析通量。为了更有效地减少位置偏差,我们开发了一种新颖的块随机板布局。与完全随机化的布局不同,块随机化方案基于关键的实验发现和有关分析偏差和变异性分布的假设,将特定曲线区域放置在板上的预定义块中。使用块随机板布局,我们证明了用于疫苗释放的夹心酶联免疫吸附测定(ELISA)中相对效价估计值的平均偏差从6.3%降低到1.1%。此外,相对效价估计的不精确度从10.2降至4.5%CV。使用模拟,我们还证明了测定偏差对测量置信度的影响及其与复制策略的关系。我们概述了块随机化方案的基本概念,可潜在地应用于其他基于微量滴定的检测方法。

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