Weldon School of Biomedical Engineering, Purdue University, West Lafayette, IN 47907, USA.
School of Electrical and Computer Engineering, Purdue University, West Lafayette, IN 47907, USA.
Sensors (Basel). 2020 Apr 23;20(8):2407. doi: 10.3390/s20082407.
The demand for wearable and point-of-care devices has led to an increase in electrochemical sensor development to measure an ever-increasing array of biological molecules. In order to move from the benchtop to truly portable devices, the development of new biosensors requires miniaturized instrumentation capable of making highly sensitive amperometric measurements. To meet this demand, we have developed KickStat, a miniaturized potentiostat that combines the small size of the integrated Texas Instruments LMP91000 potentiostat chip (Texas Instruments, Dallas, TX, USA) with the processing power of the ARM Cortex-M0+ SAMD21 microcontroller (Microchip Technology, Chandler, AZ, USA) on a custom-designed 21.6 mm by 20.3 mm circuit board. By incorporating onboard signal processing via the SAMD21, we achieve 1 mV voltage increment resolution and an instrumental limit of detection of 4.5 nA in a coin-sized form factor. This elegant engineering solution allows for high-resolution electrochemical analysis without requiring extensive circuitry. We measured the faradaic current of an anti-cocaine aptamer using cyclic voltammetry and square wave voltammetry and demonstrated that KickStat's response was within 0.6% of a high-end benchtop potentiostat. To further support others in electrochemical biosensors development, we have made KickStat's design and firmware available in an online GitHub repository.
对可穿戴和即时检测设备的需求推动了电化学传感器的发展,以测量越来越多的生物分子。为了将设备从实验台转移到真正的便携式设备,新型生物传感器的开发需要能够进行高灵敏度电流测量的微型化仪器。为了满足这一需求,我们开发了 KickStat,这是一种将集成 Texas Instruments LMP91000 电位计芯片(Texas Instruments,达拉斯,TX,USA)的小尺寸与 ARM Cortex-M0+ SAMD21 微控制器(Microchip Technology,钱德勒,AZ,USA)的处理能力相结合的微型化电位计。通过在定制的 21.6 毫米乘 20.3 毫米电路板上采用 SAMD21 进行板载信号处理,我们实现了 1 mV 电压增量分辨率和 4.5 nA 的仪器检测限,其尺寸仅为硬币大小。这种优雅的工程解决方案允许进行高分辨率的电化学分析,而无需复杂的电路。我们使用循环伏安法和方波伏安法测量了抗可卡因适体的法拉第电流,并证明 KickStat 的响应与高端台式电位计的响应相差在 0.6%以内。为了进一步支持电化学生物传感器的开发,我们在在线 GitHub 存储库中提供了 KickStat 的设计和固件。