Dimeric-molecular beacon based intramolecular strand displacement amplification enables robust analysis of miRNA.

Talanta

College of Biological, Chemical Science and Engineering, Jiaxing University, Jiaxing, 314001, China. Electronic address:

Published: December 2024

AI Article Synopsis

  • The study presents a new detection system called dimeric molecular beacon isothermal strand displacement amplification (Di-MB-ISDA) to enhance the sensitivity and accuracy of miRNA detection, crucial for early disease diagnosis like cancer.
  • Di-MB consists of two monomeric beacons connected by a DNA linker, which improves stability against degradation and significantly amplifies detection signals upon interaction with target miRNA.
  • The Di-MB-ISDA system overcomes challenges faced by traditional methods, achieving a detection limit of 100 pM and showing promise for application in the biomedical field and disease monitoring.

Article Abstract

Given the critical role of miRNAs in regulating gene expression and their potential as biomarkers for various diseases, accurate and sensitive miRNA detection is essential for early diagnosis and monitoring of conditions such as cancer. In this study, we introduce a dimeric molecular beacon (Di-MB) based isothermal strand displacement amplification (ISDA) system (Di-MB-ISDA) for enhanced miRNA detection. The Di-MB system is composed of two monomeric MBs (Mono-MBs) connected by a double-stranded DNA linker with single-stranded sequences in the middle, facilitating binding with the flexible arms of the Mono-MBs. This design forms a compact, high-density structure, significantly improving biostability against nuclease degradation. In the absence of target miRNA, the Di-MB maintains its stable structure. When target miRNA is present, it binds to the stem-loop regions, causing the hairpin structure to unfold and expose the stem sequences. These sequences serve as templates for the built-in primers, triggering DNA replication through an intramolecular recognition mechanism. This spatial confinement effect accelerates the strand displacement reaction, allowing the target miRNA to initiate additional reaction cycles and amplify the detection signal. The Di-MB-ISDA system addresses key challenges such as poor biostability and limited sensitivity seen in traditional methods. By enhancing biostability and optimizing reaction conditions, this system demonstrates robust performance for miRNA detection with a detection limit of 100 pM. The findings highlight the potential of Di-MB-ISDA for sensitive and accurate miRNA analysis, paving the way for its application in biomedical study and disease diagnosis in complex biological samples.

Download full-text PDF

Source
http://dx.doi.org/10.1016/j.talanta.2024.126778DOI Listing

Publication Analysis

Top Keywords

strand displacement
12
mirna detection
12
target mirna
12
displacement amplification
8
mirna
8
detection
5
dimeric-molecular beacon
4
beacon based
4
based intramolecular
4
intramolecular strand
4

Similar Publications

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!