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Bovine cysticercosis—Development of a real-time PCR to enhance classification of suspect cysts identified at meat inspection

机译:牛囊尾rc病—实时PCR的开发以增强肉类检查中发现的可疑囊肿的分类

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摘要

Laboratory confirmation methods are important in bovine cysticerosis diagnosis as other pathologies can result in morphologically similar lesions resulting in false identifications. We developed a probe-based real-time PCR assay to identify Taenia saginata in suspect cysts encountered at meat inspection and compared its use with the traditional method of identification, histology, as well as a published nested PCR. The assay simultaneously detects T. saginata DNA and a bovine internal control using the cytochrome c oxidase subunit 1 gene of each species and shows specificity against parasites causing lesions morphologically similar to those of I. saginata. The assay was sufficiently sensitive to detect 1 fg (Ct 35.09 ± 0.95) of target DNA using serially-diluted plasmid DNA in reactions spiked with bovine DNA as well as in all viable and caseated positive control cysts. A loss in PCR sensitivity was observed with increasing cyst degeneration as seen in other molecular methods. In comparison to histology, the assay offered greater sensitivity and accuracy with 10/19 (53%) T. saginata positives detected by real-time PCR and none by histology. When the results were compared with the reference PCR, the assay was less sensitive but offered advantages of faster turnaround times and reduced contamination risk. Estimates of the assay's repeatability and reproducibility showed the assay is highly reliable with reliability coefficients greater than 0.94.
机译:实验室确认方法对牛胆囊变的诊断很重要,因为其他病理可能导致形态相似的病变,从而导致错误的识别。我们开发了一种基于探针的实时PCR分析方法,以鉴定肉类检查中遇到的疑似囊肿中的牛带en虫,并将其与传统的鉴定,组织学方法和已发表的嵌套式PCR方法进行比较。该测定法同时使用每种物种的细胞色素c氧化酶亚基1基因检测牛膝T. DNA和牛内对照,并显示出对寄生虫的特异性,该寄生虫引起与牛膝I.形态相似的病变。该分析方法足够灵敏,可以在牛DNA加标反应以及所有活的和干酪样的阳性对照囊肿中,使用连续稀释的质粒DNA检测1 fg(Ct 35.09±0.95)的目标DNA。如其他分子方法中所见,随着囊肿变性的增加,PCR敏感性下降。与组织学相比,该检测方法具有更高的灵敏度和准确性,实时荧光定量PCR检测到10/19(53%)的T. saginata阳性,而组织学检测不到。将结果与参考PCR进行比较时,该方法灵敏度较低,但具有周转时间短和污染风险降低的优点。对测定的可重复性和可重复性的估计表明,测定具有很高的可靠性,可靠性系数大于0.94。

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