用便携式光学系统检测核酸扩增对人血中伤寒沙门菌的高灵敏度检测

First A. Avinash Kaur, Second B. Arti Kapil, Third C. Ravikrishnan Elangovan, Fourth D. Sandeep Jha, Fifth E. Dinesh Kalyanasundaram
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引用次数: 0

摘要

肠道热等疾病仍然是全球死亡的主要原因,特别是在资源贫乏的环境中。传统的细胞活力试验采用细菌培养法,然后进行确证性生化试验,如运动性、三糖铁琼脂(TSI)、柠檬酸盐、脲酶试验、凝集试验,形成诊断肠热的金标准方法。然而,这些现有的实践非常耗时。采用基于磁性纳米颗粒的预富集、用于信号增强的环介导等温扩增试验(LAMP)和使用内部设计的光学检测系统进行信号检测,实现了50 CFU/mL血液中伤寒沙门氏菌(S. typhi)的高灵敏度检测。利用STY2879基因特异性引物扩增从伤寒沙门氏菌细胞中分离的核酸。该方案包括在孵育前和孵育后4小时检测核酸扩增,以确认(a)细胞活力和(b)伤寒沙门氏菌的特异性,以及(c)伤寒沙门氏菌的定量。引物对血液中常见病原菌如大肠杆菌、铜绿假单胞菌、金黄色葡萄球菌、鲍曼杆菌、粪肠杆菌、甲型副伤寒链球菌和肺炎克雷伯菌等106 CFU/mL无交叉反应性。该检测系统在食品和医疗诊断领域具有广阔的应用前景。该仪器可以扩展到其他病原体在未来通过修改引物和最小的修改预浓缩和裂解方案。
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Highly-sensitive detection of Salmonella typhi in human blood using a portable optical system for detection of nucleic acids amplification
Diseases such as enteric fever continues to be major cause of deaths globally, particularly in poor resource settings. Traditional cell viability test using bacterial culture method followed by confirmatory biochemical tests such as motility, triple sugar iron agar (TSI), citrate, urease test, agglutination tests, forms the gold standard method for diagnosis of enteric fever. However, these existing practices are time consuming. Highly sensitive detection of Salmonella typhi (S. typhi) in blood of 50 CFU/mL was achieved using our protocol involving a magnetic nanoparticle based preconcentration, a loop mediated isothermal amplification assay (LAMP) for signal augmentation and signal detection using an in-house designed optical detection system. Primers specific for STY2879 gene were used to amplify the nucleic acid isolated from S. typhi cells. The protocol involves detection of nucleic acid amplification for both pre and four hour post-incubation that confirms (a) cell viability and (b) specificity of S. typhi and (c) quantification of S. typhi. No cross reactivity of the primers were observed against 106 CFU/mL of common pathogenic bacterial species found in blood such as such as E. coli, P. aeruginosa, S. aureus, A baumanni, E. faecalis, S. paratyphi A and K. pneumonia. This detection system shows a promising future in the field of food and medical diagnostics. The instrument can be extended to other pathogens in the future with modification of the primers and minimal modification of the pre-concentration and lysis protocol.
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