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Photolithographic Synthesis of High-Density DNA and RNA Arrays on Flexible, Transparent, and Easily Subdivided Plastic Substrates

机译:在柔性,透明和易于细分的塑料基板上光刻合成高密度DNA和RNA阵列

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摘要

The photolithographic fabrication of highdensity DNA and RNA arrays on flexible and transparent plastic substrates is reported. The substrates are thin sheets of poly(ethylene terephthalate) (PET) coated with cross-linked polymer multilayers that present hydroxyl groups suitable for conventional phosphoramidite-based nucleic acid synthesis. We demonstrate that by modifying array synthesis procedures to accommodate the physical and chemical properties of these materials, it is possible to synthesize plastic-backed oligonudeotide arrays with feature sizes as small as 14 um x 14 tan and feature densities in excess of 125 000/cm2, similar to specifications attainable using rigid substrates such as glass or glassy carbon. These plastic-backed arrays are tolerant to a wide range of hybridization temperatures, and improved synthetic procedures are described that enable the fabrication of arrays with sequences up to 50 nucleotides in length. These arrays hybridize with S/N ratios comparable to those fabricated on otherwise identical arrays prepared on glass or glassy carbon. This platform supports the enzymatic synthesis of RNA arrays and proof-ofconcept experiments are presented showing that the arrays can be readily subdivided into smaller arrays (or "rnillichips") using common laboratory-scale laser cutting tools. These results expand the utility of oligonudeotide arrays fabricated on plastic substrates and open the door to new applications for these important bioanalytical tools.
机译:据报道,在柔性和透明塑料基材上光刻制造高密度DNA和RNA阵列。基底是涂有交联聚合物多层的聚对苯二甲酸乙二醇酯(PET)薄片,该多层聚合物具有适用于常规基于亚磷酰胺的核酸合成的羟基。我们证明,通过修改阵列合成程序以适应这些材料的物理和化学性质,可以合成特征尺寸小至14 um x 14 tan且特征密度超过125 000 / cm2的塑料背衬寡核苷酸阵列,类似于使用刚性基材(例如玻璃或玻璃碳)可获得的规格。这些支持塑料的阵列可耐受广泛的杂交温度,并描述了改进的合成程序,使得能够制造长度不超过50个核苷酸的序列的阵列。这些阵列以与在玻璃或玻璃碳上制备的其他相同阵列上制造的信噪比相当的信噪比进行杂交。该平台支持RNA阵列的酶促合成,并提供了概念验证实验,表明使用通用的实验室规模的激光切割工具,可以轻松将阵列细分为较小的阵列(或“芯片”)。这些结果扩展了在塑料基材上制备的寡核苷酸阵列的用途,并为这些重要的生物分析工具的新应用打开了大门。

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