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用于DNA杂交、基因分型和药物基因组学应用的有源微电子阵列系统。

Active microelectronic array system for DNA hybridization, genotyping and pharmacogenomic applications.

作者信息

Sosnowski Ron, Heller Michael J, Tu Eugene, Forster Anita H, Radtkey Ray

机构信息

Nanogen Inc., 10398 Pacific Center Court, San Diego, CA 92121, USA.

出版信息

Psychiatr Genet. 2002 Dec;12(4):181-92. doi: 10.1097/00041444-200212000-00001.

Abstract

Microelectronic arrays have been developed for DNA hybridization analysis of point mutations, single nucleotide polymorphisms, short tandem repeats and gene expression. In addition to a variety of molecular biology and genomic research applications, such devices will also be used for infectious disease detection, genetic and cancer diagnostics, and pharmacogenomic applications. These microelectronic array devices are able to produce defined electric fields on their surfaces that allow charged molecules and other entities to be transported to or from any test site or micro-location on the planar surface of the device. These molecules and entities include DNA, RNA, proteins, enzymes, antibodies and cells. Electronic-based molecule addressing and hybridization can then be carried out, where the electric field is now used to greatly accelerate the hybridization reactions that occur on the selected test sites. When reversed, the electric field can be used to provide an additional parameter for improved hybridization. Special low-conductance buffers have been developed that provide for the rapid transport of the DNA molecules and facilitate the electronic hybridization reactions under conditions that do not support hybridization. Important to the device function is the permeation layer that overcoats the underlying microelectrodes. Generally composed of a porous hydrogel material impregnated with attachment chemistry, this permeation layer prevents the destruction of analytes at the active microelectrode surface, ameliorates the adverse effects of electrolysis products on the sensitive hybridization and affinity reactions, and serves as a support structure for attaching DNA probes and other molecules to the array. The microelectronic chip or array device is incorporated into a cartridge package (NanoChip trade mark cartridge) that provides the electronic, optical, and fluidic interfacing. A complete instrument system (NanoChip trade mark Molecular Biology Workstation) provides a chip loader, fluorescent reader, computer control interface and data display screen. The probe loader component allows DNA probes or target molecules (polymerase chain reactions amplicons, genomic DNA, RNA, etc.) to be selectively addressed to the array test sites, providing the end-user with 'make your own chip' capabilities. The electronic hybridization can then be carried out and the chip analyzed using a fluorescent detector system. In addition to carrying out rapid, accurate and highly reliable genotyping (point mutations, single nucleotide polymorphisms, short tandem repeats), other future applications include gene expression analysis, or on-chip amplification, immunoassays and cell separation and selection. Smaller and more compact systems are also being designed for portable sample to answer and point of care diagnostics.

摘要

微电子阵列已被开发用于点突变、单核苷酸多态性、短串联重复序列和基因表达的DNA杂交分析。除了各种分子生物学和基因组研究应用外,此类设备还将用于传染病检测、遗传和癌症诊断以及药物基因组学应用。这些微电子阵列设备能够在其表面产生特定的电场,使带电分子和其他实体能够进出设备平面表面上的任何测试位点或微位置。这些分子和实体包括DNA、RNA、蛋白质、酶、抗体和细胞。然后可以进行基于电子的分子寻址和杂交,此时电场用于极大地加速在选定测试位点上发生的杂交反应。当电场反向时,可用于提供一个额外参数以改善杂交。已经开发出特殊的低电导缓冲液,其可实现DNA分子的快速运输,并在不支持杂交的条件下促进电子杂交反应。对设备功能至关重要的是覆盖在底层微电极上的渗透层。该渗透层通常由浸渍有连接化学物质的多孔水凝胶材料组成,可防止活性微电极表面的分析物被破坏,减轻电解产物对敏感杂交和亲和反应的不利影响,并作为将DNA探针和其他分子连接到阵列的支撑结构。微电子芯片或阵列设备被集成到一个盒式封装(NanoChip商标盒)中,该盒式封装提供电子、光学和流体接口。一个完整的仪器系统(NanoChip商标分子生物学工作站)提供芯片加载器、荧光读取器、计算机控制接口和数据显示屏。探针加载器组件允许将DNA探针或靶分子(聚合酶链反应扩增子、基因组DNA、RNA等)选择性地寻址到阵列测试位点,为最终用户提供“自己制作芯片”的能力。然后可以进行电子杂交,并使用荧光检测系统对芯片进行分析。除了进行快速、准确和高度可靠的基因分型(点突变、单核苷酸多态性、短串联重复序列)外,其他未来应用还包括基因表达分析、片上扩增、免疫测定以及细胞分离和筛选。更小、更紧凑的系统也正在设计中,用于便携式样本到答案和即时诊断。

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