Garrido-Maestu Alejandro, Azinheiro Sarah, Carvalho Joana, Abalde-Cela Sara, Carbó-Argibay Enrique, Diéguez Lorena, Piotrowski Marek, Kolen'ko Yury V, Prado Marta
International Iberian Nanotechnology Laboratory, Braga, Portugal.
Front Microbiol. 2017 Nov 6;8:2159. doi: 10.3389/fmicb.2017.02159. eCollection 2017.
Foodborne diseases are an important cause of morbidity and mortality. According to the World Health Organization, there are 31 main global hazards, which caused in 2010 600 million foodborne illnesses and 420000 deaths. Among them, spp. is one of the most important human pathogens, accounting for more than 90000 cases in Europe and even more in the United States per year. In the current study we report the development, and thorough evaluation in food samples, of a microfluidic system combining loop-mediated isothermal amplification with gold nanoparticles (AuNPs). This system is intended for low-cost, , detection of different pathogens, as the proposed methodology can be extrapolated to different microorganisms. A very low limit of detection (10 cfu/25 g) was obtained. Furthermore, the evaluation of spiked food samples (chicken, turkey, egg products), completely matched the expected results, as denoted by the index kappa of concordance (value of 1.00). The results obtained for the relative sensitivity, specificity and accuracy were of 100% as well as the positive and negative predictive values.
食源性疾病是发病和死亡的重要原因。根据世界卫生组织的数据,全球有31种主要危害因素,2010年这些因素导致了6亿例食源性疾病和42万例死亡。其中,[具体菌种名称]是最重要的人类病原体之一,在欧洲每年导致超过9万例病例,在美国更多。在本研究中,我们报告了一种将环介导等温扩增与金纳米颗粒(AuNPs)相结合的微流控系统在食品样本中的开发及全面评估。该系统旨在低成本、[此处原文缺失内容]检测不同病原体,因为所提出的方法可以推广到不同的微生物。获得了非常低的检测限(10 cfu/25 g)。此外,对加标食品样本(鸡肉、火鸡、蛋制品)的评估与预期结果完全匹配,一致性指数kappa值为1.00。相对灵敏度、特异性和准确性以及阳性和阴性预测值的结果均为100%。