Nafari Nasim Barzegar, Zamani Majid, Mosayyebi Bashir
Department of Pharmaceutical Science, Faculty of Pharmacy, Guilan University of Medical Sciences, Rasht, Iran.
Department of Hematology, Faculty of Medical Sciences, Tarbiat Modares University, Tehran, Iran.
Clin Chim Acta. 2025 Feb 1;567:120096. doi: 10.1016/j.cca.2024.120096. Epub 2024 Dec 15.
Lateral flow assays (LFAs) have emerged as pivotal tools for the rapid and reliable detection of microRNAs (miRNAs). It is believed that these biomarkers are crucial for the diagnosis and prognosis of various diseases, particularly cancer. Traditional miRNA detection techniques, such as quantitative PCR, are highly sensitive but have limited efficacy due to their complexity, high cost, and technical requirements. LFAs are valuable due to their simplicity, affordability, and portability, making them ideal for point-of-care testing in low-resource environments. However, challenges remain in developing highly sensitive and accurate LFA devices for miRNA detection. This review explores recent advancements in LFAs to improve miRNA detection sensitivity and specificity. Key innovations include signal amplification using isothermal methods, the application of CRISPR (Clustered Regularly Interspaced Short Palindromic Repeats)/Cas systems for direct targeting of miRNAs, and the incorporation of nanomaterials, such as gold nanoparticles and nanorods, to enhance signal intensity. Using artificial intelligence (AI) algorithms enables precise, automated, and rapid quantification of miRNAs. Moreover, this review examines the ability of LFA-based devices to detect multiple miRNAs simultaneously. One of the most significant advancements is the detection of miR-21 levels as low as 20 pM and let-7a levels as low as 40 pM within ten minutes. This highlights the potential of these devices for clinical diagnostics.
侧向流动分析(LFA)已成为快速、可靠地检测微小RNA(miRNA)的关键工具。人们认为,这些生物标志物对各种疾病,尤其是癌症的诊断和预后至关重要。传统的miRNA检测技术,如定量PCR,高度灵敏,但由于其复杂性、高成本和技术要求,效果有限。LFA因其简单、经济实惠和便携性而具有价值,使其成为资源匮乏环境中即时检测的理想选择。然而,在开发用于miRNA检测的高灵敏度和准确的LFA设备方面仍然存在挑战。本综述探讨了LFA在提高miRNA检测灵敏度和特异性方面的最新进展。关键创新包括使用等温方法进行信号放大、应用CRISPR(成簇规律间隔短回文重复序列)/Cas系统直接靶向miRNA,以及加入纳米材料,如金纳米颗粒和纳米棒,以增强信号强度。使用人工智能(AI)算法能够对miRNA进行精确、自动化和快速定量。此外,本综述还研究了基于LFA的设备同时检测多种miRNA的能力。最显著的进展之一是在十分钟内检测到低至20 pM的miR-21水平和低至40 pM的let-7a水平。这突出了这些设备在临床诊断中的潜力。