首页> 外文OA文献 >Assay Design Affects the Interpretation of T-Cell Receptor Gamma Gene Rearrangements: Comparison of the Performance of a One-Tube Assay with the BIOMED-2-Based TCRG Gene Clonality Assay
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Assay Design Affects the Interpretation of T-Cell Receptor Gamma Gene Rearrangements: Comparison of the Performance of a One-Tube Assay with the BIOMED-2-Based TCRG Gene Clonality Assay

机译:检测设计影响T细胞受体Gamma基因重排的解释:单管检测与基于BIOMED-2的TCRG基因克隆检测的性能比较

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摘要

Interpretation of capillary electrophoresis results derived from multiplexed fluorochrome-labeled primer sets can be complicated by small peaks, which may be incorrectly interpreted as clonal T-cell receptor-γ gene rearrangements. In this report, different assay designs were used to illustrate how design may adversely affect specificity. Ten clinical cases, with subclonal peaks containing one of the two infrequently used joining genes, were identified with a tri-color, one-tube assay. The DNA was amplified with the same NED fluorochrome on all three joining primers, first combined (one-color assay) and then amplified separately using a single NED-labeled joining primer. The single primer assay design shows how insignificant peaks could easily be wrongly interpreted as clonal T-cell receptor-γ gene rearrangements. Next, the performance of the one-tube assay was compared with the two-tube BIOMED-2-based TCRG Gene Clonality Assay in a series of 44 cases. Whereas sensitivity was similar between the two methods (92.9% vs. 96.4%; P = 0.55), specificity was significantly less in the BIOMED-2 assay (87.5% vs. 56.3%; P = 0.049) when a 2× ratio was used to define clonality. Specificity was improved to 81.3% by the use of a 5× peak height ratio (P = 0.626). These findings illustrate how extra caution is needed in interpreting a design with multiple, separate distributions, which is more difficult to interpret than a single distribution assay.
机译:从多重荧光染料标记的引物组获得的毛细管电泳结果的解释可能会因小峰而变得复杂,这些小峰可能被错误地解释为克隆性T细胞受体γ基因重排。在本报告中,使用了不同的分析设计来说明设计可能如何对特异性产生不利影响。用三色单管分析法鉴定了十个临床病例,其亚克隆峰包含两个不常用的连接基因之一。在所有三个连接引物上用相同的NED荧光染料扩增DNA,首先结合(单色测定),然后使用单个NED标记的连接引物分别扩增。单引物测定设计表明,微不足道的峰如何轻易地被错误地解释为克隆性T细胞受体-γ基因重排。接下来,在一系列44例病例中,将单管检测的性能与基于两管BIOMED-2的TCRG基因克隆检测进行了比较。两种方法之间的灵敏度相似(92.9%vs. 96.4%; P = 0.55),而当使用2倍比率时,BIOMED-2分析的特异性显着降低(87.5%vs. 56.3%; P = 0.049)。定义克隆性。通过使用5倍峰高比(P = 0.626),特异性提高到81.3%。这些发现表明,在解释具有多个单独分布的设计时需要格外谨慎,这比单个分布分析更难解释。

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