Shkodenko Liubov A, Ateiah Muhannad, Mohamed Al-Abbass, Rubel Maria S, Koshel Elena I
Laboratory of DNA-Nanosensor Diagnostics, ITMO University, Lomonosova Street, 9, St Petersburg, Russia.
Bio Protoc. 2025 Mar 20;15(6):e5240. doi: 10.21769/BioProtoc.5240.
The early detection of meningitis pathogens-including , and -through point-of-care (POC) systems is essential for mitigating the risk of neurological damage, enhancing patient outcomes, and facilitating prompt clinical decision-making. Nucleic acid amplification testing (NAAT) is a promising tool for improving the diagnosis process of bacterial pathogens associated with brain inflammation. This is due to its high sensitivity, rapidity, and compatibility with portable diagnostic platforms, making it particularly suitable for POC applications. This protocol introduces an innovative diagnostic approach designed to function effectively without the need for advanced laboratory equipment. By leveraging dual-priming isothermal amplification (DAMP), the assay uses custom internal primers to enhance specificity and minimize false results. Brilliant Green is used in this assay for fluorescence detection due to its availability, high fluorescence level, and optimal sample-to-background (S/B) ratio. The assay demonstrated excellent specificity, absence of false positives, sensitivity comparable to loop-mediated isothermal amplification (LAMP), and a high S/B ratio. Key features • A POC-compatible diagnostic assay developed to enable rapid and accurate diagnosis of meningitis without the need for advanced laboratory infrastructure. • A DAMP-based approach for the identification of pathogens responsible for bacterial meningitis with high sensitivity and specificity while ensuring the absence of false-positive results.
通过即时检测(POC)系统早期检测脑膜炎病原体(包括[具体病原体1]、[具体病原体2]和[具体病原体3])对于降低神经损伤风险、改善患者预后以及促进及时的临床决策至关重要。核酸扩增检测(NAAT)是一种很有前景的工具,可用于改进与脑部炎症相关的细菌病原体的诊断过程。这是因为它具有高灵敏度、快速性以及与便携式诊断平台的兼容性,使其特别适用于即时检测应用。本方案介绍了一种创新的诊断方法,该方法无需先进的实验室设备即可有效运行。通过利用双引物等温扩增(DAMP),该检测使用定制的内部引物来提高特异性并最大限度地减少假结果。由于亮绿易于获得、荧光水平高且样本与背景(S/B)比率最佳,因此在本检测中用于荧光检测。该检测显示出优异的特异性、无假阳性、灵敏度与环介导等温扩增(LAMP)相当以及高S/B比率。关键特性 • 开发了一种与即时检测兼容的诊断检测方法,无需先进的实验室基础设施即可实现对脑膜炎的快速准确诊断。 • 一种基于DAMP的方法,用于以高灵敏度和特异性鉴定导致细菌性脑膜炎的病原体,同时确保无假阳性结果。