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Feasibility Studies on Si-Based Biosensors

机译:硅基生物传感器的可行性研究

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摘要

The aim of this paper is to summarize the efforts carried out so far in the fabrication of Si-based biosensors by a team of researchers in Catania, Italy. This work was born as a collaboration between the Catania section of the Microelectronic and Microsystem Institute (IMM) of the CNR, the Surfaces and Interfaces laboratory (SUPERLAB) of the Consorzio Catania Ricerche and two departments at the University of Catania: the Biomedical Science and the Biological Chemistry and Molecular Biology Departments. The first goal of our study was the definition and optimization of an immobilization protocol capable of bonding the biological sensing element on a Si-based surface via covalent chemical bonds. We chose SiO2 as the anchoring surface due to its biocompatibility and extensive presence in microelectronic devices. The immobilization protocol was tested and optimized, introducing a new step, oxide activation, using techniques compatible with microelectronic processing. The importance of the added step is described by the experimental results. We also tested different biological molecule concentrations in the immobilization solutions and the effects on the immobilized layer. Finally a MOS-like structure was designed and fabricated to test an electrical transduction mechanism. The results obtained so far and the possible evolution of the research field are described in this review paper.
机译:本文的目的是总结意大利卡塔尼亚的一组研究人员迄今为止在制造硅基生物传感器方面所做的努力。这项工作是CNR的微电子与微系统研究所(IMM)的卡塔尼亚分校,Consorzio Catania Ricerche的表面和界面实验室(SUPERLAB)与卡塔尼亚大学的两个系之间的协作而诞生的:生物医学科学和生物化学和分子生物学系。我们研究的第一个目标是定义和优化能够通过共价化学键将生物传感元件粘合在基于Si的表面上的固定方案。由于其生物相容性和在微电子设备中的广泛存在,我们选择SiO2作为锚固表面。测试并优化了固定方案,采用了与微电子处理兼容的技术,引入了新的步骤:氧化物活化。实验结果说明了添加步骤的重要性。我们还测试了固定溶液中不同生物分子的浓度以及对固定层的影响。最后,设计并制造了一个类似MOS的结构,以测试电传导机制。这篇综述文章描述了迄今为止获得的结果以及该研究领域的可能发展。

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