Piezoresistive cantilever platform for label-free detection of molecules

Bahareh Gholamzadeh, E. Ghafar-Zadeh, F. Awwad, M. Sawan
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引用次数: 3

Abstract

MEMS sensors can be used for label-free detection in many different biological studies. Usually in this procedure the presence of special substance in a sample can be monitored based on its interaction and binding with specific probe molecules which are immobilized on a sensor. These interactions will result into variations which can be detected by biosensors. Developing a low cost, high throughput system for performing label-free detection can be beneficial for different studies. This type of platform can be used for real-time detection of multiple molecules with high sensitivity. As a first step towards developing such platform, in this paper we present a label-free detection system using an array of 30 cantilevers implemented through standard MEMS foundry process (MetalMUMPs). Herein, we discuss the design, fabrication, and characterization results of the proposed platform using electrical and interferometry techniques. The results from simulations have shown that sensors can be used for measuring small forces in range of nN and pN and the characterization tests have proven that sensors are functional and they are ready to be used in biological experiments.
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用于无标签分子检测的压阻悬臂平台
MEMS传感器可用于许多不同的生物学研究中的无标签检测。通常在这个过程中,可以根据样品中特殊物质与固定在传感器上的特定探针分子的相互作用和结合来监测样品中特殊物质的存在。这些相互作用将导致生物传感器可以检测到的变化。开发一种低成本、高通量的无标签检测系统对不同的研究都是有益的。该平台可用于多分子实时检测,灵敏度高。作为开发此类平台的第一步,在本文中,我们提出了一种无标签检测系统,该系统使用30个悬臂阵列,通过标准MEMS铸造工艺(MetalMUMPs)实现。在此,我们讨论了设计,制造,并提出了使用电子和干涉测量技术的平台的表征结果。模拟结果表明,传感器可用于测量nN和pN范围内的小力,表征测试已证明传感器是功能性的,它们已准备好用于生物实验。
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