Research Center for Translational Medicine, Medical Innovation Center and State Key Laboratory of Cardiology, Shanghai East Hospital, The Institute for Biomedical Engineering & Nano Science, Tongji University School of Medicine, Shanghai, 200120, PR China.
Tongji Hospital, Tongji University School of Medicine, Shanghai, 200120, PR China.
Biosens Bioelectron. 2024 Jul 1;255:116229. doi: 10.1016/j.bios.2024.116229. Epub 2024 Mar 19.
Quantifying trace glycoproteins in biofluids requires ultrasensitive components, but feedback is not available in the current portable platforms of point-of-care (POC) diagnosis technologies. A compact and ultrasensitive bioelectrochemical patch was based on boronate-affinity amplified organic electrochemical transistors (BAAOECTs) for POC use was developed to overcome this dilemma. Benefit from the cascading signal enhancement deriving from boronate-affinity targeting multiple regions of glycoprotein and OECTs' inherent signal amplification capability, the BAAOECTs achieved a detection limit of 300 aM within 25 min, displaying about 3 orders of magnitude improvement in sensitivity compared with the commercial electrochemical luminescence (ECL) kit. By using a microfluidic chip, a microcontroller module, and a wireless sensing system, the testing workflows of the above patch was automated, allowing for running the sample-to-answer pipeline even in a resource-limited environment. The reliability of such portable biosensing platform is well recognized in clinical diagnostic applications of heart failure. Overall, the remarkable enhanced sensitivity and automated workflow of BAAOECTs biosensing platform provide a prospective and generalized design policy for expanding the POC diagnosis capabilities of glycoproteins.
量化生物流体中的痕量糖蛋白需要超灵敏的组件,但当前的即时检测(POC)诊断技术的便携式平台无法提供反馈。为了克服这一困境,我们开发了一种基于硼酸亲和性放大的有机电化学晶体管(BAAOECT)的紧凑型超灵敏生物电化学贴片,可用于 POC。得益于硼酸亲和性靶向糖蛋白多个区域和 OECT 固有信号放大能力的级联信号增强,BAAOECT 在 25 分钟内实现了 300 aM 的检测限,与商业电化学发光(ECL)试剂盒相比,灵敏度提高了约 3 个数量级。通过使用微流控芯片、微控制器模块和无线传感系统,上述贴片的测试工作流程实现了自动化,即使在资源有限的环境中也可以实现从样本到答案的流水线运行。该便携式生物传感平台在心力衰竭的临床诊断应用中得到了广泛认可。总之,BAAOECT 生物传感平台的显著增强的灵敏度和自动化工作流程为扩展 POC 糖蛋白诊断能力提供了有前景和通用的设计策略。