Alfred E. Mann Department of Biomedical Engineering, University of Southern California, 1042 Downey Way, Los Angeles, 90089, CA, USA.
Lab Chip. 2024 Sep 10;24(18):4306-4320. doi: 10.1039/d4lc00436a.
Saliva has emerged as a primary biofluid for non-invasive disease diagnostics. Saliva collection involves using kits where individuals stimulate saliva production a chewing device like a straw, then deposit the saliva into a designated collection tube. This process may pose discomfort to patients due to the necessity of producing large volumes of saliva and transferring it to the collection vessel. This work has developed a saliva collection and analysis device where the patient operates it like a lollipop, stimulating saliva production. The lollipop-mimic device contains yarn-based microfluidic channels that sample saliva and transfer it to the sensing zone embedded in the stem of the device. We have embedded electrochemical sensors in the lollipop platform to measure vanillin levels in saliva. Vanillin is the most common food flavoring additive and is added to most desserts such as ice cream, cakes, and cookies. Overconsumption of vanillin can cause side effects such as muscle weakness, and damage to the liver, kidneys, stomach, and lungs. We detected vanillin using direct oxidation at a laser-induced graphene (LIG) electrode. We showed a dynamic range of 2.5 μM to 30 μM, covering the physiologically relevant concentration of vanillin in saliva. The lab-on-a-lollipop platform requires only 200 μL of saliva and less than 2 minutes to fill the channels and complete the measurement. This work introduces the first sensor-embedded lollipop-mimic saliva collection and measurement system.
唾液已成为非侵入性疾病诊断的主要生物流体。唾液采集涉及使用试剂盒,个体通过使用类似吸管的咀嚼装置刺激唾液分泌,然后将唾液存入指定的采集管中。由于需要产生大量唾液并将其转移到采集容器中,这个过程可能会给患者带来不适。本工作开发了一种唾液采集和分析装置,患者可以像棒棒糖一样操作它,刺激唾液分泌。棒棒糖状模拟装置包含基于纱线的微流控通道,用于采集唾液并将其转移到装置杆部嵌入的感应区。我们在棒棒糖平台中嵌入了电化学传感器,以测量唾液中的香草醛水平。香草醛是最常见的食品调味添加剂,添加到大多数甜点中,如冰淇淋、蛋糕和饼干。过量摄入香草醛会引起副作用,如肌肉无力、肝、肾、胃和肺损伤。我们使用激光诱导石墨烯(LIG)电极进行直接氧化检测香草醛。我们展示了 2.5 μM 至 30 μM 的动态范围,涵盖了唾液中香草醛的生理相关浓度。棒棒糖式的实验室仅需要 200 μL 的唾液,不到 2 分钟即可填满通道并完成测量。本工作介绍了首个传感器嵌入的棒棒糖状模拟唾液采集和测量系统。