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基于杂交链式反应纳米支架的功能核酸纳米材料级联滚环扩增用于信号增强的 miRNA let-7a 检测。

Hybrid chain reaction nanoscaffold-based functional nucleic acid nanomaterial cascaded with rolling circle amplification for signal enhanced miRNA let-7a detection.

机构信息

Beijing Key Laboratory for Separation and Analysis in Biomedicine and Pharmaceuticals, School of Medical Technology, Beijing Institute of Technology, Beijing, 100081, China.

出版信息

Mikrochim Acta. 2024 Aug 13;191(9):533. doi: 10.1007/s00604-024-06617-5.

Abstract

A novel functional nucleic acid (FNA) nanomaterial based on hybrid chain reaction (HCR) nanoscaffolds is proposed to solve the problem of time superposition and repeated primer design in sensitive miRND detection using cascade amplification technique. Rolling circle amplification (RCA) was cascaded with the prepared FNA nanomaterials for miRNA let-7a (as a model target) sensitive detection by lateral flow assay (LFA). Under the optimal conditions, the proposed RCA-FNA-LFA assay demonstrated the specificity and accuracy for miRNA let-7a detection with a detection limit of 1.07 pM, which increased sensitivity by nearly 20 times compared with that of RCA -LFA assay. It is worth noting that the non-target-dependent self-assembly process of HCR nanoscaffolds does not take up the whole detection time, thus, less time is taken than that of the conventional cascaded method. Moreover, the proposed assay does not need to consider the system compatibility between two kinds of isothermal amplification techniques. As for detection of different miRNAs, only the homologous arm of the padlock probe of RCA needs to be changed, while the FNA nanomaterial does not need any change, which greatly simplifies the primer design of the cascaded amplification techniques. With further development, the proposed RCA-FNA-LFA assay might achieve more sensitive and faster results to better satisfy the requirements of clinical diagnosis combing with more sensitive labels or small strip reader.

摘要

提出了一种基于杂交链式反应(HCR)纳米支架的新型功能核酸(FNA)纳米材料,以解决使用级联放大技术进行敏感 miRND 检测时时间叠加和重复引物设计的问题。滚环扩增(RCA)与制备的 FNA 纳米材料级联,用于通过侧流分析(LFA)对 miRNA let-7a(作为模型靶标)进行灵敏检测。在最佳条件下,所提出的 RCA-FNA-LFA 测定法表现出对 miRNA let-7a 检测的特异性和准确性,检测限为 1.07 pM,与 RCA-LFA 测定法相比,灵敏度提高了近 20 倍。值得注意的是,HCR 纳米支架的非靶依赖性自组装过程不占用整个检测时间,因此比传统的级联方法用时更少。此外,该测定法不需要考虑两种等温扩增技术之间的系统兼容性。对于不同的 miRNAs 的检测,只需改变 RCA 的发夹探针的同源臂,而 FNA 纳米材料不需要任何改变,这大大简化了级联扩增技术的引物设计。随着进一步的发展,所提出的 RCA-FNA-LFA 测定法可能会获得更灵敏和更快的结果,以更好地满足临床诊断的要求,结合更灵敏的标签或小型条带读取器。

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