Open AccessChemistryEngineeringBiology

Swayandipta Dey, Mathias Dolci, P. Zijlstra

2023.1.12ACS Physical Chemistry Au

DOI: 10.1021/acsphyschemau.2c00061

tlooto Summary

The advantages and disadvantages of single-molecule assays are described and future challenges in the field are summarized including their optical miniaturization and integration, multimodal sensing capabilities, accessible time scales, and compatibility with real-life matrices such as biological fluids.

Abstract

In recent years, the sensitivity and specificity of optical sensors has improved tremendously due to improvements in biochemical functionalization protocols and optical detection systems. As a result, single-molecule sensitivity has been reported in a range of biosensing assay formats. In this Perspective, we summarize optical sensors that achieve single-molecule sensitivity in direct label-free assays, sandwich assays, and competitive assays. We describe the advantages and disadvantages of single-molecule assays and summarize future challenges in the field including their optical miniaturization and integration, multimodal sensing capabilities, accessible time scales, and compatibility with real-life matrices such as biological fluids. We conclude by highlighting the possible application areas of optical single-molecule sensors that include not only healthcare but also the monitoring of the environment and industrial processes.

Citation format

DEY, Swayandipta; DOLCI, Mathias; ZIJLSTRA, P. Single-molecule optical biosensing: Recent advances and future challenges. ACS Physical Chemistry Au, 2023, 3: 143–156.