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A Combined Conjugation and Hybridization Technology for Different Types of DNA and Nanoparticles

机译:不同类型的DNA和纳米粒子的结合结合和杂交技术

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This study develops a new technology for conjugation between surface-modified Fe_3O_4 nanoferrofluid and DNA that can be applied for biological sensors. After fabrication by chemical disposition and thorough washing, centrifuging and sieving, pure Fe_3O_4 nanoferrofluid with mean particle size of 15 nm was obtained. PVP-k30 (Polyvinyl pyrrolidone) acts as dispersant to maintain a stable suspension of the Fe_O_4 nanoferrofluid, which is then added to and fully mixed with deionized water (ddwater) (pH >7). Experimental evidence shows that the surfaces of the Fe_3O_4 particles carry positive charge and can effectively create a conjugating reaction with DNA. In addition, this TiO_2 nanofluid with mean particle size of 20 nm and high suspension stability is used to conjugate with another type of DNA. Finally, two sets of fluids, Fe_3O_4 and TiO_2, that have undergone conjugating reactions with different types of DNA are mixed in a culturecell, so they are linked together through the hybridization between different types of DNA. By spectrophotometer analysis, it is shown that DNA still exists in the fluid after hybridization, verifying that the hybridization technology between different types of DNA developed in this study is very successful.
机译:这项研究开发了一种新技术,用于将表面修饰的Fe_3O_4纳米铁磁流体与DNA结合,可以应用于生物传感器。经过化学处理并彻底洗涤,离心和筛分后,制得平均粒径为15 nm的纯Fe_3O_4纳米铁磁流体。 PVP-k30(聚乙烯吡咯烷酮)充当分散剂,以维持Fe_O_4纳米铁磁流体的稳定悬浮液,然后将其加入去离子水(ddwater)(pH> 7)中并与之充分混合。实验证据表明,Fe_3O_4颗粒的表面带有正电荷,可以有效地与DNA发生共轭反应。此外,这种平均粒径为20 nm且具有高悬浮稳定性的TiO_2纳米流体可用于与另一种类型的DNA偶联。最后,将已与不同类型的DNA发生共轭反应的两组流体Fe_3O_4和TiO_2混合在培养池中,以便通过不同类型的DNA之间的杂交将它们连接在一起。通过分光光度计分析表明,杂交后DNA仍存在于液体中,证明本研究开发的不同类型DNA之间的杂交技术是非常成功的。

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