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静电微滤(EM)可在大体积样品中低丰度浓缩和回收有活力的微生物,并增强下游检测。

Electrostatic microfiltration (EM) enriches and recovers viable microorganisms at low-abundance in large-volume samples and enhances downstream detection.

机构信息

AntiMicrobial Resistance (AMR) IRG, Singapore-MIT Alliance for Research and Technology (SMART), 138602, Singapore.

Critical Analytics for Manufacturing Personalized-Medicine (CAMP) IRG, Singapore-MIT Alliance for Research and Technology (SMART), 138602, Singapore.

出版信息

Lab Chip. 2024 Sep 10;24(18):4275-4287. doi: 10.1039/d4lc00419a.

Abstract

Rapid and sensitive detection of pathogens in various samples is crucial for disease diagnosis, environmental surveillance, as well as food and water safety monitoring. However, the low abundance of pathogens (<10 CFU) in large volume (1 mL-1 L) samples containing vast backgrounds critically limits the sensitivity of even the most advanced techniques, such as digital PCR. Therefore, there is a critical need for sample preparation that can enrich low-abundance pathogens from complex and large-volume samples. This study develops an efficient electrostatic microfiltration (EM)-based sample preparation technique capable of processing ultra-large-volume (≥500 mL) samples at high throughput (≥10 mL min). This approach achieves a significant enrichment (>8000×) of extremely-low-abundance pathogens (down to level of 0.02 CFU mL, , 10 CFU in 500 mL). Furthermore, EM-enabled sample preparation facilitates digital amplification techniques sensitively detecting broad pathogens, including bacteria, fungi, and viruses from various samples, in a rapid (≤3 h) sample-to-result workflow. Notably, the operational ease, portability, and compatibility/integrability with various downstream detection platforms highlight its great potential for widespread applications across diverse settings.

摘要

快速、灵敏地检测各种样本中的病原体对于疾病诊断、环境监测以及食品和水安全监测至关重要。然而,即使是最先进的技术,如数字 PCR,在处理含有大量背景的大容量(1 毫升-1 升)样本时,也受到低丰度病原体(<10 CFU)的限制,这极大地限制了其灵敏度。因此,需要一种能够从复杂和大容量样本中富集低丰度病原体的样品制备方法。本研究开发了一种高效的基于静电微滤(EM)的样品制备技术,能够以高通量(≥10 毫升/分钟)处理超大体积(≥500 毫升)的样品。该方法可实现极低丰度病原体(低至 0.02 CFU 毫升,即 500 毫升中 10 CFU)的显著富集(>8000×)。此外,EM 辅助的样品制备便于数字扩增技术灵敏地检测来自各种样本的广泛病原体,包括细菌、真菌和病毒,在快速(≤3 小时)的样本到结果工作流程中。值得注意的是,其操作简便、便携性以及与各种下游检测平台的兼容性/可集成性,突显了其在各种应用场景中的广泛应用潜力。

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