论文标题

使用双重炸弹生物传感器对生物分子的快速,高敏性检测:应用于SARS-COV-2核素蛋白

Rapid, high-sensitivity detection of biomolecules using dual-comb biosensing: application to the SARS-CoV-2 nucleocapsid protein

论文作者

Miyamura, Shogo, Oe, Ryo, Nakahara, Takuya, Okada, Shota, Taue, Shuji, Tokizane, Yu, Minamikawa, Takeo, Yano, Taka-aki, Otsuka, Kunihiro, Sakane, Ayuko, Sasaki, Takuya, Yasutomo, Koji, Kajisa, Taira, Yasui, Takeshi

论文摘要

生物分子的快速,敏感检测对于改进病毒以及生物标志物和环境激素的测试方法很重要。例如,对SARS-COV-2进行测试对于与19日大流行的战斗至关重要。反向转录聚合酶链反应(RT-PCR)是Covid-19测试的当前标准。但是,这是由于长期测试过程所阻碍的。缩短测试过程的同时达到高灵敏度将有助于更快隔离,因此可能预防SARS-COV-2的传播。在这里,我们旨在通过通过光学频率梳的双弯曲构型增强光学生物传感的性能来实现SARS-COV-2核素蛋白的快速,敏感检测。依赖病毒浓度的光谱偏移通过光子和RF区域之间的频率转换转化为光子RF偏移,从而促进了成熟的电频率测量。此外,现有温度 - 拖流补偿可以使病毒浓度依赖性信号的很小变化从大的可变背景信号中提取。这种双重炸弹生物传感技术有可能将共vid-19测试时间降低到10分钟,同时保持接近RT-PCR的灵敏度。此外,该系统不仅可以用于感知病毒,还可以用于临床诊断,医疗保健和环境监测的各种生物分子。

Rapid, sensitive detection of biomolecules is important for improved testing methods for viruses as well as biomarkers and environmental hormones. For example, testing for SARS-CoV-2 is essential in the fight against the COVID-19 pandemic. Reverse-transcription polymerase chain reaction (RT-PCR) is the current standard for COVID-19 testing; however, it is hampered by the long testing process. Shortening the testing process while achieving high sensitivity would facilitate sooner quarantine and thus presumably prevention of the spread of SARS-CoV-2. Here, we aim to achieve rapid, sensitive detection of the SARS-CoV-2 nucleocapsid protein by enhancing the performance of optical biosensing with a dual-comb configuration of optical frequency combs. The virus-concentration-dependent optical spectrum shift is transformed into a photonic RF shift by frequency conversion between the optical and RF regions, facilitating mature electrical frequency measurements. Furthermore, active-dummy temperature-drift compensation enables very small changes in the virus-concentration-dependent signal to be extracted from the large, variable background signal. This dual-comb biosensing technique has the potential to reduce the COVID-19 testing time to 10 min while maintaining sensitivity close to that of RT-PCR. Furthermore, this system can be applied for sensing of not only viruses but also various biomolecules for clinical diagnosis, health care, and environmental monitoring.

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