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Reversible switching of the interparticle distance in DNA-templated gold nanoparticle dimers

机译:DNA模板金纳米颗粒二聚体中颗粒间距离的可逆转换

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We produce gold nanoparticle dimers with a surface-to-surface distance that varies reversibly by a factor of 3 when hybridizing or removing a single target DNA strand. The dimers are built on one DNA template that features a stem-loop enabling the interparticle distance change. Using electrophoresis, we reach 90% sample purities and demonstrate that this chemical process is reversible in solution at room temperature for a low molar excess of the target DNA strand. The kinetics of the reaction is asymmetric due to steric hindrance in the stem-loop opening process. Furthermore, a statistical analysis of cryo-electron microscopy measurements allows us to provide the first quantitative analysis of distance changes in chemically switchable nanoparticle assemblies.
机译:我们生产的金纳米粒子二聚体在杂交或去除单个目标DNA链时,其表面间距离可逆变化3倍。二聚体建立在一个DNA模板上,该模板具有茎环,可以改变粒子间的距离。使用电泳,我们达到了90%的样品纯度,并证明了该化学过程在室温下溶液中可逆,对于低摩尔过量的目标DNA链。由于茎环开环过程中的空间位阻,反应动力学是不对称的。此外,低温电子显微镜测量的统计分析使我们能够提供化学可切换纳米颗粒组件中距离变化的首次定量分析。

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