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Chip PCR. I. Surface passivation of microfabricated silicon-glass chips for PCR

机译:芯片PCR。 I.用于PCR的微细硅玻璃芯片的表面钝化

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The microreaction volumes of PCR chips (a microfabricated silicon chip bonded to a piece of flat glass to form a PCR reaction chamber) create a relatively high surface to volume ratio that increases the significance of the surface chemistry in the polymerase chain reaction (PCR). We investigated several surface passivations in an attempt to identify 'PCR friendly' surfaces and used those surfaces to obtain amplifications comparable with those obtained in conventional PCR amplification systems using polyethylene tubes. Surface passivations by a silanization procedure followed by a coating of a selected protein or polynucleotide and the deposition of a nitride or oxide layer onto the silicon surface were investigated. Native silicon was found to be an inhibitor of PCR and amplification in an untreated PCR chip (i.e. native slicon) had a high failure rate. A silicon nitride (Si(3)N(4) reaction surface also resulted in consistent inhibition of PCR. Passivating the PCR chip using a silanizing agent followed by a polymer treatment resulted in good amplification. However, amplification yields were inconsistent and were not always comparable with PCR in a conventional tube. An oxidized silicon (SiO(2) surface gave consistent amplifications comparable with reactions performed in a conventional PCR tube.
机译:PCR芯片(连接到一块平板玻璃以形成PCR反应室的微细加工的硅芯片)的微反应体积产生相对较高的表面体积比,从而增加了表面化学在聚合酶链反应(PCR)中的重要性。我们研究了几种表面钝化,以鉴定“ PCR友好”表面,并使用这些表面获得与使用聚乙烯管的常规PCR扩增系统相比可比的扩增。研究了通过硅烷化程序进行的表面钝化,然后涂覆选定的蛋白质或多核苷酸,以及在硅表面上沉积氮化物或氧化物层。发现天然硅是PCR的抑制剂,并且在未处理的PCR芯片(即天然硅石)中的扩增失败率很高。氮化硅(Si(3)N(4)反应表面也导致对PCR的持续抑制。使用硅烷化剂对PCR芯片进行钝化然后进行聚合物处理可导致良好的扩增,但是扩增产量不一致,并非总是如此氧化硅(SiO(2)表面可提供与常规PCR管中进行的反应相当的一致的扩增)。

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