Electronics and Nanoscale Engineering, School of Engineering, University of Glasgow, Glasgow G12 8LT, United Kingdom.
Wellcome Centre for Molecular Parasitology, Institute of Infection, Immunity and Inflammation, University of Glasgow, Glasgow G12 8TA, United Kingdom.
Biosens Bioelectron. 2018 Dec 30;122:88-94. doi: 10.1016/j.bios.2018.09.013. Epub 2018 Sep 5.
Metabolites, the small molecules that underpin life, can act as indicators of the physiological state of the body when their abundance varies, offering routes to diagnosis of many diseases. The ability to assay for multiple metabolites simultaneously will underpin a new generation of precision diagnostic tools. Here, we report the development of a handheld device based on complementary metal oxide semiconductor (CMOS) technology with multiple isolated micro-well reaction zones and integrated optical sensing allowing simultaneous enzyme-based assays of multiple metabolites (choline, xanthine, sarcosine and cholesterol) associated with multiple diseases. These metabolites were measured in clinically relevant concentration range with minimum concentrations measured: 25 μM for choline, 100 μM for xanthine, 1.25 μM for sarcosine and 50 μM for cholesterol. Linking the device to an Android-based user interface allows for quantification of metabolites in serum and urine within 2 min of applying samples to the device. The quantitative performance of the device was validated by comparison to accredited tests for cholesterol and glucose.
代谢物是构成生命的小分子物质,当它们的丰度发生变化时,可作为反映身体生理状态的指标,为许多疾病的诊断提供途径。同时检测多种代谢物的能力将为新一代精准诊断工具奠定基础。在这里,我们报告了一种基于互补金属氧化物半导体 (CMOS) 技术的手持式设备的开发,该设备具有多个隔离的微井反应区和集成的光学传感功能,可同时进行与多种疾病相关的多种代谢物(胆碱、黄嘌呤、肌氨酸和胆固醇)的基于酶的检测。这些代谢物在临床相关浓度范围内进行了测量,最小测量浓度为:胆碱 25μM,黄嘌呤 100μM,肌氨酸 1.25μM,胆固醇 50μM。将该设备与基于 Android 的用户界面连接起来,可在将样品应用于设备后 2 分钟内对血清和尿液中的代谢物进行定量。该设备的定量性能通过与胆固醇和葡萄糖的认证测试进行比较得到了验证。