首页> 外文期刊>Analytical and bioanalytical chemistry >Recombinase polymerase amplification-lateral flow (RPA-LF) assay combined with immunomagnetic separation for rapid visual detection of Vibrio parahaemolyticus in raw oysters
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Recombinase polymerase amplification-lateral flow (RPA-LF) assay combined with immunomagnetic separation for rapid visual detection of Vibrio parahaemolyticus in raw oysters

机译:重组酶聚合酶扩增 - 横向流动(RPA-LF)测定结合免疫磁性分离,用于在原料牡蛎中快速视觉检测vibrio parahaemolyticus

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摘要

This study was the first attempt to optimize a recombinase polymerase amplification (RPA) and lateral flow (LF) assay combined with immunomagnetic separation (IMS) for the detection of Vibrio parahaemolyticus in raw oysters. The newly developed IMS-RPA-LF assay effectively combines sample preparation, amplification, and detection into a single platform. Under optimal conditions, the average capture efficiency (CE) for 104?colony forming units (CFU)/mL of four V. parahaemolyticus strains with 0.4?mg of immunomagnetic beads within 45?min was 80.3%. After optimization, the RPA-LF assay was able to detect V. parahaemolyticus within 15?min, comprising DNA amplification with RPA for 10?min at 37?°C and visualization of the amplicons through LF strips for 5?min. The RPA-LF assay exhibited good specificity by showing a test line for eight V. parahaemolyticus strains with different serotypes but no cross-reaction with 12 non-V. parahaemolyticus bacteria. RPA-LF assay was found to be sensitive and detected as low as 10?pg genomic DNA of V. parahaemolyticus. For spiked oyster samples, the detection sensitivity of V. parahaemolyticus was improved to 2?CFU/g by IMS-RPA-LF after enrichment for 4?h; in contrast, the IMS-PCR method required 8?h. Hence, even when V. parahaemolyticus was present in very low numbers in samples, the IMS-RPA-LF assay could be completed within half a workday. Because of the high sensitivity, specificity, and speed of the IMS-RPA-LF assay, this newly developed method opens a novel pathway for rapid diagnostic screening of V. parahaemolyticus in seafood, which is an increasingly important health issue worldwide.Graphical abstract
机译:该研究是首次尝试优化重组酶聚合酶扩增(RPA)和横向流动(LF)测定与免疫磁性分离(IMS)进行检测,用于检测原料牡蛎中的Vibrio Parahaemolyticus。新开发的IMS-RPA-LF测定有效地将样品制备,扩增和检测结合到一个平台中。在最佳条件下,104的平均捕获效率(CE)?菌落形成单位(CFU)/ ml的四个V.副磷酸盐菌株在45Ω·min内的0.4μmmg免疫磁珠为80.3%。优化后,RPA-LF测定能够在15?min内检测V.副溶血溶液,其在37Ω℃下用RPA进行10〜min的DNA扩增,并通过LF条带可视化5≤min。通过显示具有不同血清型的八维糖溶解菌株的测试线,RPA-LF测定表现出良好的特异性,但没有与12个非V的交叉反应。 Parahaemolyticus细菌。发现RPA-LF测定是敏感的并且检测到V.Vahaemolyticus的V.1β的PG基因组DNA。对于尖刺的Oyster样品,V. parahaemolyticus的检测敏感性得到改善为2〜2?CFU / g在富集后的IMS-RPA-LF,4μl;相反,需要8μm-PCR方法8?H.因此,即使在样品中的非常低的数量中存在V.乙酰氨醇,IMS-RPA-LF测定也可以在工作日的一半内完成。由于IMS-RPA-LF测定的高灵敏度,特异性和速度,这种新开发方法开启了一种新的途径,用于海鲜的V.Parahaemolyticus的快速诊断筛查,这是全球越来越重要的健康问题。图摘要

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