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MEASUREMENT OF DNA HYBRIDIZATION BY NANO-DEFORMATION OF MICROCANTILEVER IN CMOS BIOSENSOR

机译:CMOS生物传感器中微悬臂梁的纳米变形对DNA杂交的测量

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摘要

A 1 cm × 1 cm biosensor chip for analyzing DNA hybridization is developed by CMOS process. The sensor chip has 6 measurement regions, each region with 3 pairs of parallel microcantilever of 125 × 60 × 0.75 μm. The microcantilever is a 4-layer structure composed of an immobilized surface layer, a top insulation layer, an embedded piezoresistive layer, and a bottom insulation layer to measure the nano-deformation induced by the surface-assemble monolayer of alkanethiols on Au. By the Langmuir adsorption model, the estimated adsorption rate of the ssDNA is 0.005sec~(-1). The design has intrinsic sensitivity needed in biochemical applications such as detecting nucleotide polymorphism and single base mutation to sequence DNA. The capability of in-situ, multipoint measurement promise many frontiers to be explored.
机译:通过CMOS工艺开发了一种用于分析DNA杂交的1 cm×1 cm生物传感器芯片。传感器芯片具有6个测量区域,每个区域具有3对125×60×0.75μm的平行微悬臂梁。微悬臂梁是4层结构,由固定的表面层,顶部绝缘层,嵌入式压阻层和底部绝缘层组成,用于测量由链烷硫醇在Au上进行表面组装的单分子层引起的纳米变形。根据Langmuir吸附模型,估计ssDNA的吸附速率为0.005sec〜(-1)。该设计具有生化应用所需的固有灵敏度,例如检测核苷酸多态性和对DNA测序的单碱基突变。现场多点测量的功能有望探索许多前沿领域。

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