NTT Microsystem Integration Laboratories, Nippon Telegraph and Telephone Corporation, Morinosato-Wakamiya, Atsugi-shi, Kanagawa 2430198, Japan.
Sensors (Basel). 2012 Oct 17;12(10):13964-84. doi: 10.3390/s121013964.
We have developed a measurement chip installation/removal mechanism for a surface plasmon resonance (SPR) immunoassay analysis instrument designed for frequent testing, which requires a rapid and easy technique for changing chips. The key components of the mechanism are refractive index matching gel coated on the rear of the SPR chip and a float that presses the chip down. The refractive index matching gel made it possible to optically couple the chip and the prism of the SPR instrument easily via elastic deformation with no air bubbles. The float has an autonomous attitude control function that keeps the chip parallel in relation to the SPR instrument by employing the repulsive force of permanent magnets between the float and a float guide located in the SPR instrument. This function is realized by balancing the upward elastic force of the gel and the downward force of the float, which experiences a leveling force from the float guide. This system makes it possible to start an SPR measurement immediately after chip installation and to remove the chip immediately after the measurement with a simple and easy method that does not require any fine adjustment. Our sensor chip, which we installed using this mounting system, successfully performed an immunoassay measurement on a model antigen (spiked human-IgG) in a model real sample (non-homogenized milk) that included many kinds of interfering foreign substances without any sample pre-treatment. The ease of the chip installation/removal operation and simple measurement procedure are suitable for frequent on-site agricultural, environmental and medical testing.
我们为一款设计用于频繁检测的表面等离子体共振 (SPR) 免疫分析仪器开发了一种测量芯片安装/拆卸机构,该仪器需要一种快速、简便的换片技术。该机构的关键部件是涂覆在 SPR 芯片背面的折射率匹配凝胶和压下芯片的浮子。折射率匹配凝胶使得通过弹性变形将芯片和 SPR 仪器的棱镜进行光学耦合成为可能,其间没有气泡。浮子具有自主姿态控制功能,通过在浮子和位于 SPR 仪器中的浮子引导件之间的永磁体的排斥力,使芯片与 SPR 仪器保持平行。该功能通过平衡凝胶的向上弹性力和浮子的向下力来实现,浮子的向下力受到浮子引导件的水平力的影响。该系统使得可以在安装芯片后立即开始 SPR 测量,并可以通过简单、轻松的方法立即卸下芯片,而无需进行任何微调。我们使用该安装系统安装的传感器芯片在包含多种干扰外来物质的模型实际样品(未均质化的牛奶)中对模型抗原(人 IgG 加标)成功进行了免疫分析测量,无需进行任何样品预处理。芯片安装/拆卸操作的简便性和简单的测量程序适用于频繁的现场农业、环境和医疗检测。