Perju Antonia, Holzhausen Ferdinand, Lauerer Anna-Maria, Wongkaew Nongnoot, Baeumner Antje J
Institute of Analytical Chemistry, Chemo- and Biosensors, University of Regensburg, 93053 Regensburg, Germany.
ACS Appl Mater Interfaces. 2023 Sep 27;15(38):44641-44653. doi: 10.1021/acsami.3c07314. Epub 2023 Sep 13.
Point-of-care (POC) devices are rapid, simple, portable, inexpensive, and convenient, but typically they only deliver qualitative results when used in the form of a lateral flow assay (LFA). Electrochemical detection could improve their sensitivity and ensure quantitative detection; however, a breakthrough in material-based technology is needed. We demonstrate a new concept in which electrodes are directly embedded within the lateral flow, enabling flow-through and hence interaction with the entire sample. This is accomplished through laser-induced carbon nanofibers (LCNFs) made by electrospinning Matrimid into nanofiber mats with subsequent pyrolyzing of electrode structures through a CO laser. Their highly porous 3D structure and superior graphene-like electrochemical properties are ideally suited for flow-through electrochemical LFA (EC-LFA), where the LCNFs are simply added in line with the other membranes. After optimization of the setup, biological binding assays typical for LFA diagnostics were successfully implemented, enabling the highly sensitive and quantitative detection of 137 pM DNA target sequences of a pathogenic organism that rivals the performance of pump-controlled microfluidic bioassays. This demonstrates that LCNF-based transducers can transform paper-based diagnostic tests to enable precise, quantitative analysis without reliance on cost-intensive read-out systems.
即时检测(POC)设备快速、简单、便携、廉价且方便,但通常以侧向流动分析(LFA)形式使用时只能提供定性结果。电化学检测可以提高其灵敏度并确保定量检测;然而,需要在基于材料的技术上取得突破。我们展示了一种新概念,其中电极直接嵌入侧向流中,实现流通,从而与整个样品相互作用。这是通过激光诱导碳纳米纤维(LCNF)实现的,通过将Matrimid静电纺丝成纳米纤维垫,随后通过CO激光对电极结构进行热解来制备。它们高度多孔的三维结构和类似石墨烯的优异电化学性质非常适合流通式电化学LFA(EC-LFA),其中LCNF只需与其他膜一起添加。在对设置进行优化后,成功实施了LFA诊断中典型的生物结合测定,能够对致病生物体的1377 pM DNA靶序列进行高灵敏度和定量检测,其性能可与泵控微流控生物测定相媲美。这表明基于LCNF的传感器可以改变基于纸的诊断测试,实现精确的定量分析,而无需依赖成本高昂的读出系统。