Division of Sensor and Actuator Systems, Department of Physics, Chemistry and Biology, Linköping University, SE-581 83, Linköping, Sweden.
Division of Sensor and Actuator Systems, Department of Physics, Chemistry and Biology, Linköping University, SE-581 83, Linköping, Sweden.
Anal Chim Acta. 2022 Apr 8;1201:339606. doi: 10.1016/j.aca.2022.339606. Epub 2022 Feb 22.
The design of a smartphone imaging surface plasmon resonance (Smart-iSPR) system integrated with an affordable 3D-printed microfluidic SPR chip fabricated via a facile manufacturing approach could pave the way towards the development of miniaturized and integrated smartphone iSPR biosensors for emerging point-of-use applications. Conventional smartphone-based SPR systems using soft photolithography for the fabrication of microfluidics SPR chips are costly, labour-intensive and required a specially-equipped light-controlled environment, that is inadequate and mismatched with the consumer-based smartphone detection platform. Herein, we report the design, fabrication and testing of an innovative print-and-stick unibody microfluidics coupled SPR chip for smartphone iSPR. The 3D-printed microfluidics (∼€0.006) is assembled via an aptly-sized adhesive tape with the gold SPR sensing surface. Such a simple integrated microfluidic SPR chip with the print-and-stick configuration has a high resistance to fluid leakages at the channel-to-sensor interface with pressure up to 66.9 Pa and the tubing-to-inset interfaces with pressure up to 86.9 Pa. The smartphone iSPR platform weighs 138 g and with a dimension of around 70 × 60 × 40 mm, and its performance was characterized using a standard Biacore® β2-microglobulin calibration kit. The sensorgrams obtained by the smartphone iSPR show all the typical characteristics for surface functionalization, association and dissociation events. The smartphone iSPR responds linearly to β2-microglobulin within the range of 10-200 nM (R2 = 0.986) with a limit-of-detection (LOD) of 1.5 nM. Given the miniaturized feature and simple camera-based imaging smartphone iSPR, the analytical performance is satisfactory when compared with the analytical dynamic range of 2-32 nM described in the Biacore® protocol.
一款集成了经济实惠的 3D 打印微流控 SPR 芯片的智能手机成像表面等离子体共振 (Smart-iSPR) 系统的设计,该芯片采用了简单的制造方法,为新兴的即时应用开发小型化和集成的智能手机 iSPR 生物传感器铺平了道路。传统的基于智能手机的 SPR 系统使用软光刻制造微流控 SPR 芯片,成本高、劳动强度大,并且需要特殊的光照控制环境,这与基于消费者的智能手机检测平台不匹配。在此,我们报告了一种创新的打印-贴合一体式微流控 SPR 芯片的设计、制造和测试,用于智能手机 iSPR。3D 打印微流控装置(约 0.006 欧元)通过大小合适的胶带与金 SPR 传感表面组装在一起。这种具有打印-贴合配置的简单集成微流控 SPR 芯片具有很高的抗泄漏能力,在通道与传感器接口处的压力高达 66.9 Pa,在管与嵌件接口处的压力高达 86.9 Pa。智能手机 iSPR 平台重 138 克,尺寸约为 70×60×40 毫米,其性能采用标准 Biacore®β2-微球蛋白校准试剂盒进行了表征。智能手机 iSPR 获得的传感器图显示了表面功能化、结合和解离事件的所有典型特征。智能手机 iSPR 对 10-200 nM 范围内的β2-微球蛋白呈线性响应(R2=0.986),检测限(LOD)为 1.5 nM。考虑到智能手机 iSPR 的小型化特点和基于摄像头的成像功能,与 Biacore®协议中描述的 2-32 nM 的分析动态范围相比,其分析性能令人满意。