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Nanotechnologies for pathogen detection: Future alternatives?

机译:用于病原体检测的纳米技术:未来的替代方案?

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The development of multiplex and flexible tests allowing the simultaneous analysis of pathogens presenting a transfusional risk is a real challenge. Current miniaturized platforms have been particularly marked by microarrays. These microsystems allow the optical detection of hundreds of individual targets simultaneously. However, they suffer from a low sensitivity and their combination with a preliminary target amplification step such as PCR is necessary. The variable level of expression of the infectious genomes of interest and their large diversity complicate multiplex amplification. Finally simultaneous analysis of multiple blood-transmitted agents poses numerous difficulties in diagnosis that remain unresolved by currently available technologies. Until recently, scientific and technological advances for pathogen detection have focused on target amplification and optical detection steps. Today, sample preparation is recognized as a critical area to improve. Nanotechnologies can reach the single-cell or molecular scale and consequently overcome several current technological obstacles. They offer new technological tools for improving sample preparation but also for avoiding target amplification and the current fluorescent labeling. The combination of nano-objects and nano-systems in current technologies offers new possibilities for potential applications in the detection of infectious agents.
机译:允许同时分析存在输血危险的病原体的多重检测和灵活检测的发展是一个真正的挑战。当前的微型化平台已经以微阵列为特色。这些微系统允许同时光学检测数百个单个目标。然而,它们具有低灵敏度,并且需要与诸如PCR的初步靶标扩增步骤组合。感兴趣的感染性基因组的可变表达水平及其巨大多样性使多重扩增复杂化。最后,同时分析多种血液传播的药物给诊断带来了许多困难,而这些困难目前尚无法解决。直到最近,病原体检测的科学技术进步一直集中在目标扩增和光学检测步骤上。如今,样品制备已被认为是需要改进的关键领域。纳米技术可以达到单细胞或分子规模,因此克服了当前的一些技术障碍。他们提供了新的技术工具,可以改善样品制备,还可以避免靶标扩增和当前的荧光标记。当前技术中纳米物体和纳米系统的结合为潜在的传染病检测应用提供了新的可能性。

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