首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Rapid detection of Salmonella enterica in food samples by a novel approach with combination of sample concentration and direct PCR
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Rapid detection of Salmonella enterica in food samples by a novel approach with combination of sample concentration and direct PCR

机译:用新型方法快速检测食品样本中的食物样本中的样品浓度和直接PCR的组合

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摘要

Foodborne salmonellosis remains a major economic burden worldwide and particularly for food industries. The diverse and complexity of food matrices pose great challenges for rapid and ultra-sensitive detection of Salmonella in food samples. In this study, combination of pathogen pre-concentration with rapid molecular identification is presented to overcome these challenges. This combination enabled effective real-time PCR detection of low levels of Salmonella enterica serovar Typhimurium without culture enrichment. Anti-salmonella antibody, immobilized on protein AG-magnetic beads, could efficiently concentrate Salmonella Typhimurium with a capturing efficiency of 95%. In the direct PCR, a strong linear relationship between bacteria concentration and the number of cycles was observed with a relative PCR efficiency of 92% resulting in a limit of detection (LoD) of 2 CFU/mL. Analysis of spiked food samples that include vegetable salad, egg yolk, egg white, whole egg and minced pork meat has validated the precision of the method. A relative accuracy of 98.3% with a sensitivity of 91.6% and specificity of 100% was achieved in the Salmonella spiked food samples. The use of a Phusion hot start DNA polymerase with a high tolerance to possible PCR inhibitors allowed the integration of direct PCR, and thereby reducing the duration of analysis to less than 3 h. The Cohen's kappa index showed excellent agreement (0.88) signifying the capability of this method to overcome the food matrix effects in rapid and ultra-sensitive detection of Salmonella in food. This approach may lay a future platform for the integration into a Lab-on-a-chip system for online monitoring of foodborne pathogens.
机译:食源性沙门氏菌病仍然是全球性的主要经济负担,特别是食品工业。食物基质的多样化和复杂性对食品样品中的沙门氏菌的快速和超敏检测产生了巨大挑战。在该研究中,提出了具有快速分子识别的病原体预浓度的组合以克服这些挑战。这种组合能够实现有效的实时PCR检测低水平的沙门氏菌肠道血吸虫伤寒伤寒毛虫,无培养富集。固定在蛋白质Ag-磁珠上的抗沙门氏菌抗体可以有效地浓缩沙门氏菌培苏尿嘧啶,捕获效率为95%。在直接PCR中,观察到细菌浓度与循环次数之间的强烈线性关系,其相对PCR效率为92%,导致2CFU / ml的检测限(LOD)。分析包括蔬菜沙拉,蛋黄,蛋清,整个鸡蛋和碎猪肉的尖刺食品样品已经验证了该方法的精度。在沙门氏菌的食物样品中,敏感度为91.6%的相对精度为91.6%,达到100%的特异性。使用Phusion热启动DNA聚合酶具有高耐受的PCR抑制剂允许直接PCR的整合,从而将分析持续时间降低至小于3小时。科恩的Kappa指数表明了良好的协议(0.88),旨在克服食品中沙门氏菌的快速和超敏检测中的食物基质作用的能力。这种方法可以奠定未来的平台,用于集成到芯片上的实验室系统中,用于在线监测食源性病原体。

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