Li Weijia, Yang Xingsheng, Wang Dongfeng, Xie Jianwei, Wang Shengqi, Rong Zhen
State Key Laboratory of Toxicology and Medical Countermeasures, and Laboratory of Toxicant Analysis, Institute of Toxicology and Pharmacology, Beijing, 100850, China.
Bioinformatics Center of AMMS, Beijing, 100850, China.
Talanta. 2024 Sep 1;277:126438. doi: 10.1016/j.talanta.2024.126438. Epub 2024 Jun 18.
The escalating issue of drug abuse poses a significant threat to public health and societal stability worldwide. An on-site drug detection platform is vital for combating drug abuse and trafficking, as it eliminates the need for additional tools, extensive processes, or specialized training. Therefore, it is imperative to develop a fast, sensitive, non-invasive, and reliable multiplex drug testing platform. In this study, we have presented a silica core@dual quantum dot-shell nanocomposite (SI/DQD)-based fluorescent lateral flow immunoassay (LFIA) platform for the highly sensitive and simultaneous point-of-care (POC) detection of methamphetamine (MET) and tramadol (TR). A 3D-printed attachment was designed to integrate optical and electrical components, facilitating the miniaturization of the instrument and reducing both cost and complexity. The device's advanced hardware and effective fluorescence extraction algorithm with waveform reconstruction enable swift, automatic noise reduction and data analysis. SI/DQD nanocomposites were utilized as fluorescent nanotags in the LFIA strips due to their outstanding luminous efficiency and robustness. This LFIA platform achieves impressive detection limits (LODs) of 0.11 ng mL for MET and 0.017 ng mL for TR. The method has also successfully detected MET and TR in complex biological samples, demonstrating its practical application capabilities. The proposed fluorescent LFIA platform, based on SI/DQD technology, holds significant promise for the swift and accurate POC detection of these substances. Its affordability, compact size, and excellent analytical performance make it suitable for on-site drug testing, including at borders and roadside checks, and open up new possibilities for the design and implementation of drug testing methods.
药物滥用问题的不断升级对全球公众健康和社会稳定构成了重大威胁。现场毒品检测平台对于打击药物滥用和贩运至关重要,因为它无需额外的工具、繁琐的流程或专门培训。因此,开发一个快速、灵敏、非侵入性且可靠的多重药物检测平台势在必行。在本研究中,我们提出了一种基于二氧化硅核@双量子点壳纳米复合材料(SI/DQD)的荧光侧向流动免疫分析(LFIA)平台,用于高灵敏度同时即时检测甲基苯丙胺(MET)和曲马多(TR)。设计了一种3D打印附件来集成光学和电气组件,有助于仪器的小型化并降低成本和复杂性。该设备先进的硬件以及带有波形重建的有效荧光提取算法能够实现快速自动降噪和数据分析。由于其出色的发光效率和稳定性,SI/DQD纳米复合材料被用作LFIA试纸条中的荧光纳米标签。该LFIA平台对MET的检测限(LOD)达到0.11 ng/mL,对TR的检测限达到0.017 ng/mL,令人印象深刻。该方法还成功地在复杂生物样品中检测到了MET和TR,证明了其实际应用能力。所提出的基于SI/DQD技术的荧光LFIA平台在快速准确地即时检测这些物质方面具有巨大潜力。其价格实惠、体积小巧且分析性能出色,适用于现场毒品检测,包括边境和路边检查,为毒品检测方法的设计和实施开辟了新的可能性。