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用于免疫分析的微流控芯片上的阀门和泵

Microfluidic on-chip valve and pump for applications in immunoassays.

作者信息

Shen Haiying, Li Qiliang, Song Wenqi, Jiang Xingyu

机构信息

National Institute of Metrology, Beijing 100029, People's Republic of China.

Guangdong Provincial Key Laboratory of Advanced Biomaterials, Shenzhen Key Laboratory of Smart Healthcare Engineering, Department of Biomedical Engineering, Southern University of Science and Technology, Guangdong 518055, People's Republic of China.

出版信息

Lab Chip. 2023 Jan 17;23(2):341-348. doi: 10.1039/d2lc01042a.

Abstract

On-chip valves can simplify a microfluidic chip and make it easy to operate. However, most on-chip valves already reported still need complicated manufacture and sophisticated supporting devices. In this work, we present a straightforward on-chip valve, which can be serially connected, to form an on-chip pump. The liquid can horizontally flow one way by the regular deformations of flexure strips in the two valves at both sides of the chamber under pressure changes in microchannels generated by repeated vertical movements of linear actuators. The volume of this system including the chip and the supporting device is 0.65 cubic decimeters, which is much smaller than that of reported systems with a volume of at least 12 cubic decimeters, and the weight of this system is only 0.56 kg, making it possible for point-of-care testing. We carry out an immunoassay of folic acid on chip, and the results show satisfactory reproducibility with acceptable coefficients of variation. We determine 163 clinical human serum samples for folic acid. Furthermore, we detect transferrin, cobalamin and folic acid simultaneously on one chip with both sandwich and competitive binding immunoassay methods. We anticipate that this on-chip valve and pump can be applied in immunoassays and other biosensing applications.

摘要

片上阀可以简化微流控芯片并使其易于操作。然而,已报道的大多数片上阀仍需要复杂的制造工艺和精密的支撑设备。在这项工作中,我们展示了一种简单的片上阀,它可以串联连接以形成片上泵。在由线性致动器的反复垂直运动产生的微通道压力变化下,腔室两侧的两个阀中的挠性条带通过规则变形使液体能够单向水平流动。该系统(包括芯片和支撑装置)的体积为0.65立方分米,远小于已报道的体积至少为12立方分米的系统,并且该系统的重量仅为0.56千克,这使得即时检测成为可能。我们在芯片上进行了叶酸免疫测定,结果显示具有令人满意的重现性和可接受的变异系数。我们测定了163份临床人血清样本中的叶酸。此外,我们使用夹心和竞争结合免疫测定方法在一个芯片上同时检测转铁蛋白、钴胺素和叶酸。我们预计这种片上阀和泵可应用于免疫测定和其他生物传感应用。

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