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Nanoparticles Affect PCR Primarily via Surface Interactions with PCR Components: Using Amino-Modified Silica-Coated Magnetic Nanoparticles as a Main Model

机译:纳米粒子主要通过与PCR组件的表面相互作用影响PCR:使用氨基修饰的二氧化硅涂层磁性纳米粒子作为主要模型

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Nanomaterials have been widely reported to affect the polymerase chain reaction (PCR.). However, many studies in which these,effects were observed were not comprehensive, and many of the proposed mechanisms have been primarily speculative. In this work, we used amino-modified silica-coated magnetic nanoparticles,(ASMNPs, which can be collected very easily using an external magnetic field) as a model and compared them with gold nanoparticles (AuNPs, which have been studied extensively) to reveal the mechanisms by which nanoparticles affect PCR. We found that nanoparticles affect PCR primarily by binding to PCR components: (1) inhibition, (2) specifity, and (3) efficiency and yield of PCR are impacted. (1) Excess nanomaterials inhibit PCR by adsorbing to DNA polymerase, Mg2+, oligonucleotide primers, or DNA templates. Nanoparticle surface-active groups are particularly important to this effect. (2, a) Nanomaterials do not inhibit nonspecific amplification products caused by false priming as previously surmised. It was shown that relatively low concentrations of nanoparticles inhibited the amplification of long amplicons, and increasing the amount of nanoparticles, inhibited the amplification of short amplicons. This concentration phenomenon appears to be the result of the formation of "joints" upon the adsorption Of ASMNPs to DNA templates. (b) Nanomaterials are able to inhibit nonspecific amplification products due to incomplete amplification by preferably adsorbing, single-stranded incomplete amplification products. (3) Some types of nanomaterials, such as AuNPs, enhance the efficiency and yield of PCR because these types of nanoparticles can adsorb to single-stranded DNA more strongly than to double-stranded DNA. This behavior assists in the rapid and thorough denaturation of double-stranded DNA templates. Therefore, the interaction between the surface of nanoparticles and PCR components is sufficient to explain most of the effects of nanoparticles on PCR.
机译:纳米材料已被广泛报道会影响聚合酶链反应(PCR。)。然而,许多观察到这些影响的研究并不全面,许多提议的机制主要是推测性的。在这项工作中,我们使用氨基改性的二氧化硅包覆的磁性纳米粒子(ASMNP,可以很容易地使用外部磁场收集)作为模型,并将它们与金纳米粒子(已被广泛研究的AuNP)进行比较,以揭示纳米粒子影响PCR的机制。我们发现纳米颗粒主要通过与PCR成分结合而影响PCR:(1)抑制,(2)特异性和(3)PCR的效率和产量受到影响。 (1)过量的纳米材料会吸附到DNA聚合酶,Mg2 +,寡核苷酸引物或DNA模板上,从而抑制PCR。纳米颗粒表面活性基团对于这种作用特别重要。 (2,a)纳米材料不抑制由先前推测的错误引物引起的非特异性扩增产物。结果表明,相对低浓度的纳米粒子会抑制长扩增子的扩增,而纳米粒子的数量增加会抑制短扩增子的扩增。这种浓缩现象似乎是由于ASMNPs吸附到DNA模板上而形成“接头”的结果。 (b)通过优选地吸附单链不完全扩增产物,纳米材料能够抑制由于不完全扩增引起的非特异性扩增产物。 (3)某些类型的纳米材料(例如AuNPs)提高了PCR的效率和产量,因为这些类型的纳米颗粒与单链DNA相比,对单链DNA的吸附能力更强。此行为有助于双链DNA模板快速彻底地变性。因此,纳米颗粒表面与PCR组分之间的相互作用足以解释纳米颗粒对PCR的大部分影响。

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