Serum direct SMOS-qPCR: a fast approach for miRNAs detection

Abstract

This study presents a novel method for direct amplification of multiple microRNAs (miRNAs) from serum samples using Sensitive and Multiplexed One-Step RT-qPCR (SMOS-qPCR). The technique eliminates the need for separate miRNA extraction and purification steps, offering a streamlined approach for non-invasive early disease diagnosis. We optimized reaction conditions, including serum treatment methods and PCR system volumes, to enhance interference resistance and detection sensitivity. The optimized serum direct SMOS-qPCR demonstrated a detection limit as low as 6 × 103 copies per μL for single-target miRNA, with excellent amplification efficiency (R2 > 0.99). In multiplex detection, the method successfully quantified four miRNAs simultaneously, maintaining high sensitivity and reproducibility. Analysis of 20 clinical serum samples further validated the method's applicability for large-scale screening. Overall, this rapid, cost-effective, and user-friendly approach represents a significant advancement in miRNA detection technology, potentially facilitating earlier and more accessible disease diagnosis.

Graphical abstract: Serum direct SMOS-qPCR: a fast approach for miRNAs detection

Supplementary files

Article information

Article type
Paper
Submitted
20 Dec 2024
Accepted
20 Feb 2025
First published
24 Feb 2025

Anal. Methods, 2025, Advance Article

Serum direct SMOS-qPCR: a fast approach for miRNAs detection

G. Zhao, Y. Dai, C. Xia, Y. Xue and H. Xu, Anal. Methods, 2025, Advance Article , DOI: 10.1039/D4AY02280G

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