论文标题

使用环形等离子元语音器对SARS-COV-2尖峰蛋白的FemTomall级检测

Femtomolar-level detection of SARS-CoV-2 spike proteins using toroidal plasmonic metasensors

论文作者

Ahmadivand, Arash, Gerislioglu, Burak, Ramezani, Zeinab, Kaushik, Ajeet, Manickam, Pandiaraj, Ghoreishi, S. Amir

论文摘要

对人贝塔克罗纳病毒的有效管理严重的急性呼吸综合征(SARS)-COV-2感染,即Covid-19- covid-19,需要敏感的传感器,具有较短的样品到分辨率的持续时间进行诊断。在这个方向上,在低级别(FMOL)检测SARS-COV-2的适当替代方法之一是探索CoVID-19诊断的等离子元语音技术,该技术在先进的医疗保健计划和现代临床诊断方面提供了精致的机会。等离子体元试验器的固有优点源于它们在频率,时间和空间上同时挤压电磁场的能力。但是,低密度下的低分子量生物分子的检测是传统元语音器的典型缺点,最近使用环形元素跨表面技术解决了这些元评估。这项研究报告了基于环形电动力学概念的微型等离子免疫传感器的制造,该概念可以在Terahertz(THZ)频率中以超翼线形状维持牢固限制的等离激元模式。通过使用我们的准无限跨表面和基于功能化的金纳米颗粒(NP)(NPS)的明智优化的协议(NPS)与SARS-COV-2的特定单克隆抗体结合到跨质量的特定单克隆抗体,通过刺激的环形偶极子模式和明智优化的协议,可以监视SARS-COV-2的特异性单克隆抗体,以互助转移峰值蛋白质的均匀浓度。拥有约76 kDa的分子量使我们能够检测出具有显着较低LOD 〜4.2 Fmol的峰值蛋白的存在。

Effective and efficient management of human betacoronavirus severe acute respiratory syndrome (SARS)-CoV-2 infection i.e., COVID-19 pandemic, required sensitive sensors with short sample-to-result durations for performing diagnostics. In this direction, one of appropriate alternative approach to detect SARS-CoV-2 at low level (fmol) is exploring plasmonic metasensor technology for COVID-19 diagnostics, which offers exquisite opportunities in advanced healthcare programs, and modern clinical diagnostics. The intrinsic merits of plasmonic metasensors stem from their capability to squeeze electromagnetic fields, simultaneously in frequency, time, and space. However, the detection of low-molecular weight biomolecules at low densities is a typical drawback of conventional metasensors that has recently been addressed using toroidal metasurface technology. This research reports fabrication of a miniaturized plasmonic immunosensor based on toroidal electrodynamics concept that can sustain robustly confined plasmonic modes with ultranarrow lineshapes in the terahertz (THz) frequencies. By exciting toroidal dipole mode using our quasi-infinite metasurface and a judiciously optimized protocol based on functionalized gold nanoparticles (NPs) conjugated with the specific monoclonal antibody of SARS-CoV-2 onto the metasurface, the resonance shifts for diverse concentrations of the spike protein is monitored. Possessing molecular weight around ~76 kDa allowed us to detect the presence of spike protein with significantly low LoD ~4.2 fmol.

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