Persistent Chemiluminescence-Enabled Digital Bead Counting for Quantifying Attomolar MicroRNAs.
basic_science · Level V
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- Record sourced from PubMed, PMID 40126335.
- Also identified by DOI 10.1021/acs.nanolett.5c00838.
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Abstract
Digital biosensing is the state-of-the-art technique for precisely quantifying low-abundance biomarkers but heavily limited to sophisticated fabrication of sealed microchambers and fluorescence signal readout. Herein, a novel persistent, enhanced-chemiluminescence (E-CL)-enabled microchamber-free digital counting strategy is proposed for miRNA analysis by using fully open microbeads (MBs) as independent microreactors and signaling units. The employment of a phenothiazine derivative enhancer efficiently transfers the flash-type CL of horseradish peroxidase (HRP)-H<sub>2</sub>O<sub>2</sub>-luminol into persistent and stable E-CL with more than 10<sup>3</sup>-fold signal enhancement. More importantly, by leveraging single miRNA molecule-activated deposition of HRP, the driving power of E-CL, on the miRNA-loaded MBs, the long-lasting E-CL can be finely sustained on the MBs' surface, achieving CL-based binary MB counting for digital miRNA quantification at the aM level. This persistent E-CL-powered microchamber-free digital design may well complement prevalent fluorescence-based digital bioassays by effectively addressing their inherent drawbacks (photobleaching/quenching and scattering light background), thus expanding the digital biosensing toolbox.
Medical subject headings
- MicroRNAs
- Luminescent Measurements
- Biosensing Techniques