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Multiplexed antibody detection with an array of silicon-on-insulator microring resonators

机译:多重抗体检测与绝缘体上硅微环谐振器阵列

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摘要

Optical cavities are considered promising devices for biosensing to satisfy the high demands of the growing proteomics market. We present a prototype sensor for multiplexed label-free monitoring of biomolecular interactions based on an array of three-by-four silicon-on-insulator microring resonators fabricated by standard complementary metal-oxide semicondutor (CMOS) technology. Parallel readout was performed with an infrared camera. We have demonstrated the simultaneous detection of several model antibodies in a highly specific way. For that, we integrated the optical chip with low-temperature polydimethylsiloxane (PDMS) packaging, enabling excellent compatibility with the receptor molecules. We obtain a very selective biomolecular interaction by grafting a 2.5-nm poly(ethylene glycol) layer to the silicon. Using silicon on insulator as the material platform offers high sensitivity through miniaturization and low-cost mass fabrication through standard CMOS technology steps. The sensors in this interrogation method are able to detect 3.4 pg/mm(2) of a protein overlayer or a theoretical total mass of about 74 ag. For this novel lab on a chip, the fabrication, chemistry, readout, and packaging are developed to be scalable to detect hundreds of affinity interactions within several minutes.
机译:光学腔被认为是有前途的生物传感设备,可以满足不断增长的蛋白质组学市场的高要求。我们提出了一种原型传感器,用于基于标准互补金属氧化物半导体(CMOS)技术制造的三乘四绝缘子上硅微环谐振器阵列的生物分子相互作用的多路无标记监测。用红外摄像机并行读出。我们已经展示了以高度特异性的方式同时检测几种模型抗体。为此,我们将光学芯片与低温聚二甲基硅氧烷(PDMS)封装集成在一起,从而实现了与受体分子的出色兼容性。通过将2.5 nm聚乙二醇层接枝到硅上,我们获得了非常有选择性的生物分子相互作用。使用绝缘体上的硅作为材料平台,可通过小型化实现高灵敏度,并通过标准CMOS技术步骤实现低成本的批量制造。这种询问方法中的传感器能​​够检测到3.4 pg / mm(2)的蛋白质覆盖层或理论上约74 ag的总质量。对于这个新颖的芯片实验室,其制造,化学,读数和封装已开发为可扩展的,可以在几分钟内检测数百种亲和力相互作用。

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