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A silicon resonant micro-cantilever biosensor with closed-loop self-excitation system for biomacromolecular detection

机译:具有闭环自激悬臂生物传感器,具有用于生物分子检测的硅谐振微悬臂式生物传感器

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A silicon resonant micro-cantilever biosensor was introduced to detect biomacromolecular based on the relationship between the cantilever resonant frequency and the cantilever equivalent mass. A closed-loop self-excitation system was designed to acquire the resonant frequency of micro-cantilever. Two groups of resonant micro-cantilever sensors with different resonant frequencies of 18.192 kHz and 17.688 kHz respectively were tested. The result showed that the detection system can automatically search the resonant frequency of micro-cantilever and locked quickly. To demonstrate the feasibility of this approach, human immunoglobulin G(IgG) as model target biomacromolecular was employed, different concentration of IgG was detected by the resonant micro-cantilever sensors, the mass effect of micro-cantilever was adept and the micro-cantilever was drive by closed-loop circuit. The linearity of micro-cantilever biosensor was very well and the experimental result of sensitivity of micro-cantilever biosensor was about 6.6× 10~6. All the results showed that sensitivity of the presented immunoassay significantly increased by one-order of magnitude and offered great application promises in providing a sensitive, specific, and potent method for real-time detection of biological detection.
机译:引入硅共振微悬臂式生物传感器,以基于悬臂谐振频率与悬臂等效物质量之间的关系来检测生物分子。设计闭环自激系统以获取微悬臂的谐振频率。测试两组具有不同共振频率为18.192kHz和17.688kHz的两组具有不同共振频率的谐振微悬臂传感器。结果表明,检测系统可以自动搜索微悬臂的谐振频率并快速锁定。为了证明这种方法的可行性,采用人免疫球蛋白G(IgG)作为模型靶标生物分子,通过共振微悬臂传感器检测不同浓度的IgG,微悬臂仪的质量效应adept和微悬臂通过闭环电路驱动。微悬臂生物传感器的线性非常好,微悬臂式生物传感器的敏感性的实验结果为约6.6×10〜6。所有结果表明,所呈现的免疫测定的敏感性明显增加一阶数量,提供了良好的应用,提供了一种用于实时检测生物检测的敏感,具体和有效的方法。

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