Scanning single-molecule counting system for Eprobe with highly simple and effective approach

Author:

Hanami TakeshiORCID,Tanabe Tetsuya,Hanashi Takuya,Yamaguchi Mitsushiro,Nakata Hidetaka,Mitani Yasumasa,Kimura Yasumasa,Soma Takahiro,Usui Kengo,Isobe Michiko,Ogawa Takashi,Itoh MasayoshiORCID,Hayashizaki Yoshihide,Kondo Seiji

Abstract

Here, we report a rapid and ultra-sensitive detection technique for fluorescent molecules called scanning single molecular counting (SSMC). The method uses a fluorescence-based digital measurement system to count single molecules in a solution. In this technique, noise is reduced by conforming the signal shape to the intensity distribution of the excitation light via a circular scan of the confocal region. This simple technique allows the fluorescent molecules to freely diffuse into the solution through the confocal region and be counted one by one and does not require statistical analysis. Using this technique, 28 to 62 aM fluorescent dye was detected through measurement for 600 s. Furthermore, we achieved a good signal-to-noise ratio (S/N = 2326) under the condition of 100 pM target nucleic acid by only mixing a hybridization-sensitive fluorescent probe, called Eprobe, into the target oligonucleotide solution. Combination of SSMC and Eprobe provides a simple, rapid, amplification-free, and high-sensitive target nucleic acid detection system. This method is promising for future applications to detect particularly difficult to design primers for amplification as miRNAs and other short oligo nucleotide biomarkers by only hybridization with high sensitivity.

Funder

RIKEN and Olympus Corporation under RIKEN Integrated Collaborative Research Program

MEXT to the RIKEN Center for Integrative Medical Science

MEXT to RIKEN Preventive Medicine and Diagnosis Innovation Program

Publisher

Public Library of Science (PLoS)

Subject

Multidisciplinary

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