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An oligonucleotide synthesizer based on a microreactor chip and an inkjet printer

机译:基于微反应器芯片和喷墨打印机的寡核苷酸合成器

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Synthetic oligonucleotides?(oligos) are important tools in the fields of molecular biology and genetic engineering. For applications requiring a large number of oligos with high concentration, it is critical to perform high throughput oligo synthesis and achieve high yield of each oligo. This study reports a microreactor chip for oligo synthesis. By incorporating silica beads in the microreactors, the surface area of the solid substrate for oligo synthesis increases significantly in each microreactor. These beads are fixed in the microreactors to withstand the flushing step in oligo synthesis. Compared to conventional synthesis methods, this design is able to avoid protocols to hold the beads and integrate more microreactors on a chip. An inkjet printer is utilized to deliver chemical reagents in the microreactors. To evaluate the feasibility of oligo synthesis using this proof-of-concept synthesizer, an oligo with six nucleotide units is successfully synthesized.
机译:合成寡核苷酸?(寡核苷酸)是分子生物学和基因工程领域的重要工具。对于需要大量具有高浓度的寡核苷酸的应用,执行高通量寡核苷酸合成至关重要,并达到每种寡核苷酸的高产量。本研究报告了微反应器芯片用于寡聚合成。通过在微反应器中掺入二氧化硅珠,每个微反应器中用于寡聚合成的固体基材的表面积显着增加。这些珠子固定在微反应器中,以承受寡核苷酸合成中的冲洗步骤。与传统的合成方法相比,这种设计能够避免夹住珠子并在芯片上集成更多的微反应器。喷墨打印机用于在微反应器中递送化学试剂。为了评估使用该概念证据合成器的寡核苷酸合成的可行性,成功地合成了具有六个核苷酸单元的寡核苷酸。

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