Department of Chemistry, Faculty of Science and Technology, Thammasat University, Pathumthani, 12121, Thailand.
Department of Chemistry, Faculty of Science and Technology, Thammasat University, Pathumthani, 12121, Thailand.
Talanta. 2024 Dec 1;280:126770. doi: 10.1016/j.talanta.2024.126770. Epub 2024 Aug 27.
Monitoring various biomarkers in saliva samples emerges as a dynamic and non-invasive method. However, the high viscosity of saliva presents a distinct challenge when integrating paper-based platforms for on-site analysis. In addressing this challenge, we introduced the capillary-driven microfluidic paper-based analytical devices (μCD-PAD) designed for user-friendly and simultaneous detection of ethanol and tetrahydrocannabinol (THC) in saliva without a sample preparation step. Employing a colorimetric approach, we quantified both analytes. Synthetic salivas of varying viscosity flowed seamlessly to the detection zone without needing a sample preparation step, and no impact on colorimetric detection due to viscosity was observed (RSD <5 %). Within 10 min after the solution reached the detection zone, the device produced a homogeneous color signal, easily analyzed by a smartphone camera. To extend the application for determination to cover a legal limit concentration of ethanol and concentration of salivary THC even 24 h after marijuana consumption, the detection time of 30 min was optimized. Moreover, a saliva sample containing both analytes was used to demonstrate the capability of the developed device to detect ethanol and THC simultaneously. No cross-talk between ethanol and THC occurred and showed recovery in the 98-102 % for ethanol and 95-105 % for THC with acceptable accuracy. This developed device exhibits excellent potential for forensic applications, providing a user-friendly, cost-effective, and real-time screening tool for detecting ethanol and THC in saliva.
监测唾液样本中的各种生物标志物是一种动态且非侵入性的方法。然而,唾液的高粘度在将基于纸的平台集成到现场分析中时带来了明显的挑战。为了解决这个挑战,我们引入了毛细管驱动的微流控纸基分析器件(μCD-PAD),用于用户友好且同时检测唾液中的乙醇和四氢大麻酚(THC),无需样品制备步骤。我们采用比色法对这两种分析物进行定量。不同粘度的合成唾液无需样品制备步骤即可顺畅地流向检测区,并且粘度对比色检测没有影响(RSD <5%)。在溶液到达检测区后的 10 分钟内,该设备产生了均匀的颜色信号,可轻松通过智能手机摄像头进行分析。为了将检测范围扩展到涵盖法定的乙醇浓度限制和大麻摄入后 24 小时内唾液中 THC 的浓度,我们优化了 30 分钟的检测时间。此外,我们还使用含有这两种分析物的唾液样本来证明开发的设备能够同时检测乙醇和 THC 的能力。乙醇和 THC 之间没有相互干扰,并且乙醇的回收率在 98-102%之间,THC 的回收率在 95-105%之间,具有可接受的准确性。这种开发的设备具有出色的法医应用潜力,为检测唾液中的乙醇和 THC 提供了一种用户友好、经济高效且实时的筛选工具。