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使用数字微镜阵列进行无掩膜光导向寡核苷酸微阵列的制备。

Maskless fabrication of light-directed oligonucleotide microarrays using a digital micromirror array.

作者信息

Singh-Gasson S, Green R D, Yue Y, Nelson C, Blattner F, Sussman M R, Cerrina F

机构信息

Center for NanoTechnology, Department of Electrical and Computer Engineering, University of Wisconsin, Madison, WI 53706, USA.

出版信息

Nat Biotechnol. 1999 Oct;17(10):974-8. doi: 10.1038/13664.

Abstract

Oligonucleotide microarrays, also called "DNA chips," are currently made by a light-directed chemistry that requires a large number of photolithographic masks for each chip. Here we describe a maskless array synthesizer (MAS) that replaces the chrome masks with virtual masks generated on a computer, which are relayed to a digital micromirror array. A 1:1 reflective imaging system forms an ultraviolet image of the virtual mask on the active surface of the glass substrate, which is mounted in a flow cell reaction chamber connected to a DNA synthesizer. Programmed chemical coupling cycles follow light exposure, and these steps are repeated with different virtual masks to grow desired oligonucleotides in a selected pattern. This instrument has been used to synthesize oligonucleotide microarrays containing more than 76,000 features measuring 16 microm 2. The oligonucleotides were synthesized at high repetitive yield and, after hybridization, could readily discriminate single-base pair mismatches. The MAS is adaptable to the fabrication of DNA chips containing probes for thousands of genes, as well as any other solid-phase combinatorial chemistry to be performed in high-density microarrays.

摘要

寡核苷酸微阵列,也称为“DNA芯片”,目前是通过光导向化学方法制造的,每片芯片都需要大量光刻掩膜。在此,我们描述一种无掩膜阵列合成仪(MAS),它用计算机生成的虚拟掩膜取代了镀铬掩膜,这些虚拟掩膜被传送到数字微镜阵列。一个1:1反射成像系统在玻璃基板的活性表面上形成虚拟掩膜的紫外图像,该玻璃基板安装在与DNA合成仪相连的流通池反应室中。光照后进行编程的化学偶联循环,通过不同的虚拟掩膜重复这些步骤,以选定的模式生长所需的寡核苷酸。该仪器已用于合成包含超过76,000个特征、面积为16平方微米的寡核苷酸微阵列。这些寡核苷酸以高重复产率合成,杂交后能够轻松区分单碱基对错配。MAS适用于制造包含数千个基因探针的DNA芯片,以及任何其他要在高密度微阵列中进行的固相组合化学。

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