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首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Light-directed synthesis of high-density oligonucleotide arrays using semiconductor photoresists
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Light-directed synthesis of high-density oligonucleotide arrays using semiconductor photoresists

机译:使用半导体光刻胶的光导合成高密度寡核苷酸阵列

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摘要

High-density arrays of oligonucleotide probes are proving to be powerful new tools for large-scale DNA and RNA sequence analysis. A method for constructing these arrays, using light-directed DNA synthesis with photo- activatable monomers, can currently achieve densities on the order of 10~6 sequences/cm~2. One of the challenges facing this technology is to further increase the volume, complexity, and density of sequence information encoded in these arrays. Here we demonstrate a new approach for synthesizing DNA probe arrays that combines standard solid-phase oligonucleotide synthesis with polymeric photoresist films serving as the photoimageable component. This opens the way to exploiting high-resolution imaging materials and processes from the microelectronics industry for the fabrication of DNA probe arrays with substantially higher densities than are currently available.
机译:事实证明,高密度的寡核苷酸探针阵列是进行大规模DNA和RNA序列分析的强大新工具。目前,一种使用光可活化单体通过光导DNA合成构建这些阵列的方法,目前可获得的密度约为10〜6个序列/ cm〜2。该技术面临的挑战之一是进一步增加在这些阵列中编码的序列信息的数量,复杂性和密度。在这里,我们演示了一种合成DNA探针阵列的新方法,该方法将标准固相寡核苷酸合成与用作光成像组件的聚合光刻胶膜相结合。这开辟了利用微电子工业的高分辨率成像材料和工艺制造密度远高于目前可用密度的DNA探针阵列的方式。

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