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A sensitive gold-nanorods-based nanobiosensor for specific detection of Campylobacter jejuni and Campylobacter coli

机译:基于敏感的金纳米棒的纳米极细管传感器,用于特异性检测Chemylobacter Jejuni和Campylobacter Coli

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摘要

Abstract Background Campylobacteriosis is a zoonotic infectious disease that can be mostly undiagnosed or unreported due to fastidious Campylobacter species. The aim of this study was to develop a simple, sensitive, and quick assay for the detection of Campylobacter spp. and taking advantage of the great sensitivity of gold nanorods (GNRs) to trace changes in the local environment and interparticle distance. Methods Characterized GNRs were modified by specific ssDNA probes of cadF gene. First, the biosensor was evaluated using recombinant plasmid (pTG19-T/cadF) and synthetic single-stranded 95 bp gene, followed by a collection of the extracted DNAs of the stool samples. The sensing strategy was compared by culture, PCR, and real-time PCR. Results and discussion Analysis of 283 specimens showed successful detection of Campylobacter spp. in 44 cases (16%), which was comparable to culture (7%), PCR (15%), and real-time PCR (18%). In comparison with real-time PCR, the sensitivity of the biosensor was reported 88%, while the specificity test for all assays was the same (100%). However, it was not able to detect Campylobacter in 6 positive clinical samples, as compared to real-time PCR. The limit of detection was calculated to be the same for the biosensor and real-time PCR (102 copy number/mL). Conclusions Taking high speed and simplicity of this assay into consideration, the plasmonic nanobiosensor could pave the way in designing a new generation of diagnostic kits for detection of C. jejuni and C. coli species in clinical laboratories.
机译:摘要背景弯曲杆菌病是一种无疑的传染病,由于巨大的弯曲杆菌杆菌,可以大多是未结核或未报告的。本研究的目的是开发一种简单,敏感,快速的测定,用于检测弯曲杆菌SPP。并利用金纳米棒(GNRS)的巨大敏感性来追踪局部环境和颗粒间距离的变化。方法通过CADF基因的特异性SSDNA探针修饰了所表征GNR。首先,使用重组质粒(PTG19-T / CADF)和合成单链95bp基因评估生物传感器,然后收集粪便样品的提取的DNA。通过培养,PCR和实时PCR进行感测策略。 283个标本的结果与讨论分析表明弯曲杆菌的成功检测。在44例(16%)中,与培养(7%),PCR(15%)和实时PCR(18%)相当。与实时PCR相比,生物传感器的敏感性报告了88%,而所有测定的特异性试验相同(100%)。然而,与实时PCR相比,它无法检测6个阳性临床样品中的弯曲杆菌。计算出的检测极限与生物传感器和实时PCR(102拷贝数/ mL)相同。结论采取高速和简单性的这种测定考虑,等离子体纳米极佳传感器可以铺平了设计新一代诊断试剂盒,用于检测临床实验室中的C. Jejuni和C.Coli种类。

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