Single-Atom Nanozymes Linked Immunosorbent Assay for Sensitive Detection of Aβ 1-40: A Biomarker of Alzheimer's Disease.
Zhaoyuan LyuShichao DingNan ZhangYang ZhouNan ChengMaoyu WangMingjie XuZhenxing FengXiangheng NiuYuan ChengChao ZhangDan DuYuehe LinPublished in: Research (Washington, D.C.) (2020)
Single-atom nanozymes (SANs) possess unique features of maximum atomic utilization and present highly assembled enzyme-like structure and remarkable enzyme-like activity. By introducing SANs into immunoassay, limitations of ELISA such as low stability of horseradish peroxidase (HRP) can be well addressed, thereby improving the performance of the immunoassays. In this work, we have developed novel Fe-N-C single-atom nanozymes (Fe-Nx SANs) derived from Fe-doped polypyrrole (PPy) nanotube and substituted the enzymes in ELISA kit for enhancing the detection sensitivity of amyloid beta 1-40. Results indicate that the Fe-Nx SANs contain high density of single-atom active sites and comparable enzyme-like properties as HRP, owing to the maximized utilization of Fe atoms and their abundant active sites, which could mimic natural metalloproteases structures. Further designed SAN-linked immunosorbent assay (SAN-LISA) demonstrates the ultralow limit of detection (LOD) of 0.88 pg/mL, much more sensitive than that of commercial ELISA (9.98 pg/mL). The results confirm that the Fe-Nx SANs can serve as a satisfactory replacement of enzyme labels, which show great potential as an ultrasensitive colorimetric immunoassay.
Keyphrases
- sensitive detection
- quantum dots
- metal organic framework
- loop mediated isothermal amplification
- label free
- molecular dynamics
- high density
- aqueous solution
- gold nanoparticles
- visible light
- high throughput
- hydrogen peroxide
- real time pcr
- cognitive decline
- high resolution
- mild cognitive impairment
- risk assessment
- highly efficient