SERATEC Gesellschaft für Biotechnologie mbH, Ernst-Ruhstrat-Str. 5, 37079 Goettingen, Germany.
Fraunhofer Institute for Cell Therapy and Immunology (IZI), Branch Bioanalytics and Bioprocesses (IZI-BB), Am Mühlenberg 13, 14476 Potsdam, Germany.
Biosensors (Basel). 2024 Sep 5;14(9):430. doi: 10.3390/bios14090430.
This study re-introduces a protein-free rapid test method for nucleic acids on paper based lateral flow assays utilizing special multichannel nitrocellulose membranes and DNA-Gold conjugates, achieving significantly enhanced sensitivity, easier protocols, reduced time of detection, reduced costs of production and advanced multiplexing possibilities. A protein-free nucleic acid-based lateral flow assay (NALFA) with a limit of detection of 1 pmol of DNA is shown for the first time. The total production duration of such an assay was successfully reduced from the currently known several days to just a few hours. The simplification and acceleration of the protocol make the method more accessible and practical for various applications. The developed method supports multiplexing, enabling the simultaneous detection of up to six DNA targets. This multiplexing capability is a significant improvement over traditional line tests and offers more comprehensive diagnostic potential in a single assay. The approach significantly reduces the run time compared to traditional line tests, which enhances the efficiency of diagnostic procedures. The protein-free aspect of this assay minimizes the prevalent complications of cross-reactivity in immunoassays especially in cases of multiplexing. It is also demonstrated that the NALFA developed in this study is amplification-free and hence does not rely on specialized technicians, nor does it involve labour-intensive steps like DNA extraction and PCR processes. Overall, this study presents a robust, efficient, and highly sensitive platform for DNA or RNA detection, addressing several limitations of current methods documented in the literature. The advancements in sensitivity, cost reduction, production time, and multiplexing capabilities mark a substantial improvement, holding great potential for various applications in diagnostics, forensics, and molecular biology.
本研究重新引入了一种基于纸的侧向流动分析的无蛋白核酸快速检测方法,利用特殊的多通道硝酸纤维素膜和 DNA-Gold 结合物,实现了显著增强的灵敏度、更简单的方案、缩短了检测时间、降低了生产成本,并具有先进的多重检测可能性。首次展示了一种基于无蛋白核酸的侧向流动检测(NALFA),其 DNA 的检测限为 1pmol。该检测方法的总生产周期成功地从目前已知的数天缩短到几个小时。方案的简化和加速使得该方法更易于各种应用,更为实用。所开发的方法支持多重检测,能够同时检测多达六个 DNA 靶标。与传统的线测试相比,这种多重检测能力是一个显著的改进,在单个检测中提供了更全面的诊断潜力。与传统的线测试相比,该方法大大缩短了运行时间,提高了诊断程序的效率。该检测方法无蛋白部分最大限度地减少了免疫分析中常见的交叉反应复杂性,特别是在多重检测的情况下。此外,还证明了本研究中开发的 NALFA 是无扩增的,因此不需要专门的技术人员,也不需要像 DNA 提取和 PCR 过程那样涉及劳动密集型步骤。总的来说,本研究提出了一种用于 DNA 或 RNA 检测的强大、高效和高灵敏度的平台,解决了文献中记录的当前方法的几个局限性。灵敏度、成本降低、生产时间和多重检测能力方面的提高标志着重大改进,在诊断、法医学和分子生物学等各个领域具有广泛的应用潜力。