One‐Stop Plasmonic Nanocube‐Excited SERS Immunoassay Platform of Multiple Cardiac Biomarkers for Rapid Screening and Progressive Tracing of Acute Myocardial Infarction

Author:

Lee Hyerin1,Kim Wansun1ORCID,Song Min‐Young2,Kim Dong‐Ho3,Jung Ho Sang34,Kim Weon2,Choi Samjin1ORCID

Affiliation:

1. Department of Biomedical Engineering College of Medicine Kyung Hee University 02447 Seoul South Korea

2. Division of Cardiology Department of Internal Medicine Kyung Hee University 02447 Seoul South Korea

3. Department of Nano‐Bio Convergence Korea Institute of Materials Science (KIMS) 51508 Gyeongnam South Korea

4. School of Convergence Science and Technology Medical Science and Engineering POSTECH Kyungbuk 37673 South Korea

Abstract

AbstractRapid and precise acute myocardial infarction (AMI) diagnosis is essential for preventing patient death. In addition, the complementary roles of creatine kinase muscle brain (CK‐MB) and cardiac troponin I (cTnI) cardiac biomarkers in the early and late stages of AMI demand their simultaneous detection, which is difficult to implement using conventional fluorescence and electrochemical technologies. Here, a nanotechnology‐based one‐stop immuno‐surface‐enhanced Raman scattering (SERS) detection platform is reported for multiple cardiac indicators for the rapid screening and progressive tracing of AMI events. Optimal SERS is achieved using optical property‐based, excitation wavelength‐optimized, and high‐yield anisotropic plasmonic gold nanocubes. Optimal immunoassay reaction efficiencies are achieved by increasing immobilized antibodies. Multiple simultaneous detection strategies are implemented by incorporating two different Raman reports with narrow wavenumbers corresponding to two indicators and by establishing a computational SERS mapping process to accurately detect their concentrations, irrespective of multiple enzymes in the human serum. The SERS platform precisely estimated AMI onset and progressive timing in human serum and made rapid AMI identification feasible using a portable Raman spectrometer. This integrated platform is hypothesized to significantly contribute to emergency medicine and forensic science by providing timely treatment and observation.

Funder

National Research Foundation of Korea

Ministry of Education

Korea Institute of Materials Science

Publisher

Wiley

Subject

Biomaterials,Biotechnology,General Materials Science,General Chemistry

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