Author:
Miyamura Shogo,Oe Ryo,Nakahara Takuya,Koresawa Hidenori,Okada Shota,Taue Shuji,Tokizane Yu,Minamikawa Takeo,Yano Taka-Aki,Otsuka Kunihiro,Sakane Ayuko,Sasaki Takuya,Yasutomo Koji,Kajisa Taira,Yasui Takeshi
Abstract
AbstractRapid, sensitive detection of biomolecules is important for biosensing of infectious pathogens as well as biomarkers and pollutants. For example, biosensing of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) is still strongly required for the fight against coronavirus disease 2019 (COVID-19) pandemic. Here, we aim to achieve the rapid and sensitive detection of SARS-CoV-2 nucleocapsid protein antigen by enhancing the performance of optical biosensing based on optical frequency combs (OFC). The virus-concentration-dependent optical spectrum shift produced by antigen–antibody interactions is transformed into a photonic radio-frequency (RF) shift by a frequency conversion between the optical and RF regions in the OFC, facilitating rapid and sensitive detection with well-established electrical frequency measurements. Furthermore, active-dummy temperature-drift compensation with a dual-comb configuration enables the very small change in the virus-concentration-dependent signal to be extracted from the large, variable background signal caused by temperature disturbance. The achieved performance of dual-comb biosensing will greatly enhance the applicability of biosensors to viruses, biomarkers, environmental hormones, and so on.
Funder
Japan Science and Technology Agency
Japan Agency for Medical Research and Development
Japan Society for the Promotion of Science
Cabinet Office, Government of Japan
Tokushima Prefecture
Publisher
Springer Science and Business Media LLC
Cited by
2 articles.
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