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Dual-Functional Plasmonic Photothermal Biosensors for Highly Accurate Severe Acute Respiratory Syndrome Coronavirus 2 Detection

机译:双功能等离子体光热生物传感器,用于高精度严重急性呼吸综合征冠状病毒2检测

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The ongoing outbreak of the novel coronavirus disease (COVID-19) has spread globally and poses a threat to public health in more than 200 countries. Reliable laboratory diagnosis of the disease has been one of the foremost priorities for promoting public health interventions. The routinely used reverse transcription polymerase chain reaction (RT-PCR) is currently the reference method for COVID-19 diagnosis. However, it also reported a number of false-positive or -negative cases, especially in the early stages of the novel virus outbreak. In this work, a dual-functional plasmonic biosensor combining the plasmonic photothermal (PPT) effect and localized surface plasmon resonance (LSPR) sensing transduction provides an alternative and promising solution for the clinical COVID-19 diagnosis. The two-dimensional gold nanoislands (AuNIs) functionalized with complementary DNA receptors can perform a sensitive detection of the selected sequences from severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) through nucleic acid hybridization. For better sensing performance, the thermoplasmonic heat is generated on the same AuNIs chip when illuminated at their plasmonic resonance frequency. The localized PPT heat is capable to elevate the in situ hybridization temperature and facilitate the accurate discrimination of two similar gene sequences. Our dual-functional LSPR biosensor exhibits a high sensitivity toward the selected SARS-CoV-2 sequences with a lower detection limit down to the concentration of 0.22 pM and allows precise detection of the specific target in a multigene mixture. This study gains insight into the thermoplasmonic enhancement and its applicability in the nucleic acid tests and viral disease diagnosis.
机译:新型冠状病毒病(Covid-19)的持续爆发全球蔓延,对200多个国家的公共卫生构成了威胁。可靠的实验室诊断该疾病是促进公共卫生干预措施的最重要优先事项之一。常规使用的逆转录聚合酶链反应(RT-PCR)是目前Covid-19诊断的参考方法。然而,它还报告了许多假阳性或阴茎病例,特别是在新型病毒爆发的早期阶段。在这项工作中,组合等离子体光热(PPT)效应和局部表面等离子体共振(LSPR)感测转导的双功能性等离子感的生物传感器为临床Covid-19诊断提供了替代和有前途的解决方案。用互补DNA受体官能化的二维金纳纳米兰(AUNIS)可以通过核酸杂交来对来自严重急性呼吸综合征冠状病毒2(SARS-COV-2)的所选序列进行敏感检测。为了更好的感测性能,当在其等离子体共振频率照射时,在相同的AUNIS芯片上产生热压热量。局部PPT热能够升高原位杂交温度并促进两个类似基因序列的精确辨别。我们的双功能LSPR生物传感器对所选择的SARS-COV-2序列具有高灵敏度,该序列较低的检测限直至0.22μm的浓度,并允许精确地检测多烯混合物中的特定靶标。本研究进入了热正式化增强的洞察力及其在核酸试验和病毒性疾病诊断中的适用性。

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