Benke Evan H, Boegner David J, Bogusch Alejandra M, White Ian M
Fischell Department of Bioengineering, University of Maryland, College Park, MD, 20742, USA.
Fischell Department of Bioengineering, University of Maryland, College Park, MD, 20742, USA.
Biosens Bioelectron. 2025 Mar 1;271:117052. doi: 10.1016/j.bios.2024.117052. Epub 2024 Dec 15.
Circulating miRNA offers a tremendous opportunity as a biomarker paradigm for many applications in disease diagnostics, including point-of-care diagnostics for global health needs. However, despite the numerous miRNA detection schemes reported, there still does not exist a solution for highly sensitive sample-to-answer detection of miRNA directly from complex samples, such as whole blood. We recently developed thermally responsive alkane partitions (TRAPs), which - when combined with magnetic microbeads - enable the complete assay automation from whole blood. Here we apply TRAPs with ligation-LAMP to automate the detection of miRNA in whole blood samples. MBs and a TRAP enable the automated purification of miRNA from blood, while a novel displacement-ligation method is utilized to trigger the ligation-LAMP reaction, which is streamlined into one step by a second TRAP. Using easily manufacturable TRAP-enabled assay cassettes and a custom low-cost handheld instrument, we report the specific detection of miR-155 at concentrations as low as 15 fM in whole blood with no intermediate steps by the user. This new approach creates the opportunity for point-of-care miRNA-based diagnostics with global health applications.
循环微小RNA(miRNA)为疾病诊断中的许多应用提供了作为生物标志物范例的巨大机会,包括满足全球健康需求的即时诊断。然而,尽管已报道了众多miRNA检测方案,但对于直接从复杂样本(如全血)中高度灵敏地进行样本到答案的miRNA检测,仍不存在解决方案。我们最近开发了热响应性烷烃分区(TRAPs),当与磁性微珠结合时,可实现从全血中进行完整的检测自动化。在此,我们将TRAPs与连接-环介导等温扩增(Ligation-LAMP)相结合,以实现全血样本中miRNA检测的自动化。磁性微珠和TRAP可实现从血液中自动纯化miRNA,同时利用一种新型置换连接方法触发连接-LAMP反应,该反应通过第二个TRAP简化为一步。使用易于制造的基于TRAP的检测盒和定制的低成本手持式仪器,我们报告了在全血中低至15 fM浓度的miR-155的特异性检测,用户无需进行中间步骤。这种新方法为具有全球健康应用的基于miRNA的即时诊断创造了机会。