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Multifunctional microfluidic chip for optical nanoprobe based RNA detection – application to Chronic Myeloid Leukemia

机译:多功能基于光学纳米探针的RNA检测微流控芯片—在慢性粒细胞白血病中的应用

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摘要

Many diseases have their treatment options narrowed and end up being fatal if detected during later stages. As a consequence, point-of-care devices have an increasing importance for routine screening applications in the health sector due to their portability, fast analyses and decreased cost. For that purpose, a multifunctional chip was developed and tested using gold nanoprobes to perform RNA optical detection inside a microfluidic chip without the need of molecular amplification steps. As a proof-of-concept, this device was used for the rapid detection of chronic myeloid leukemia, a hemato-oncological disease that would benefit from early stage diagnostics and screening tests. The chip passively mixed target RNA from samples, gold nanoprobes and saline solution to infer a result from their final colorimetric properties. An optical fiber network was used to evaluate its transmitted spectra inside the chip. Trials provided accurate output results within 3 min, yielding signal-to-noise ratios up to 9 dB. When compared to actual state-of-art screening techniques of chronic myeloid leukemia, these results were, at microscale, at least 10 times faster than the reported detection methods for chronic myeloid leukemia. Concerning point-of-care applications, this work paves the way for other new and more complex versions of optical based genosensors.
机译:许多疾病的治疗选择范围缩小,如果在后期发现,最终将导致致命。因此,即时医疗设备由于其便携性,快速的分析和降低的成本,对于卫生部门的常规筛查应用越来越重要。为此,开发了多功能芯片,并使用金纳米探针对其进行了测试,以在微流体芯片内部进行RNA光学检测,而无需进行分子扩增步骤。作为概念验证,此设备用于快速检测慢性骨髓性白血病,这是一种血液肿瘤疾病,可从早期诊断和筛查测试中受益。该芯片将样品,金纳米探针和盐溶液中的靶RNA被动混合,以推断其最终比色特性的结果。光纤网络用于评估其在芯片内部的透射光谱。试验在3分钟内提供了准确的输出结果,信噪比高达9 dB。与慢性髓性白血病的实际最新筛查技术相比,这些结果在微观上至少比报道的慢性髓性白血病检测方法快至少10倍。关于即时医疗应用,这项工作为基于光学的基因传感器的其他新的和更复杂的版本铺平了道路。

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