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首页> 外文期刊>Nucleic acids research >Triplex inducer-directed self-assembly of single-walled carbon nanotubes: a triplex DNA-based approach for controlled manipulation of nanostructures
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Triplex inducer-directed self-assembly of single-walled carbon nanotubes: a triplex DNA-based approach for controlled manipulation of nanostructures

机译:单壁碳纳米管的三重诱导物定向自组装:基于三重DNA的纳米结构受控方法

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摘要

As a promising strategy for artificially control of gene expression, reversible assembly of nanomaterials and DNA nanomachine, DNA triplex formation has received much attention. Carbon nanotubes as gene and drug delivery vector or as ‘building blocks' in nano/microelectronic devices have been successfully explored. Therefore, studies on triplex DNA-based carbon nanotube hybrid materials are important for development of smart nanomaterials and for gene therapy. In this report, a small molecule directed single-walled carbon nanotubes (SWNTs) self-assembly assay has been developed by disproportionation of SWNTs–dT22·dA22 duplex into triplex dT22·dA22·dT22 and dA22 by a triplex formation inducer, coralyne. This has been studied by circular dichroism, light scattering (LS) spectroscopy, scanning electron microscopy (SEM), atomic force microscopy (AFM), electrophoretic mobility shift assay and supported by using DNA random sequence. In contrast, SWNTs do not aggregate under the same experimental conditions when the small molecules used can not induce dT22·dA22·dT22 triplex formation. Therefore, this novel small molecule-directed SWNTs self-assembly assay has also been used for screening of triplex inducers in our studies.
机译:作为人为控制基因表达,纳米材料的可逆组装和DNA纳米机器的有前途的策略,DNA三链体的形成受到了广泛的关注。已经成功地探索了碳纳米管作为基因和药物传递载体,或者作为纳米/微电子设备中的“基石”。因此,对基于三链DNA的碳纳米管杂化材料的研究对于智能纳米材料的开发和基因治疗非常重要。在本报告中,通过将SWNTs–dT 22 ·dA 22 双链体歧化成三链体,开发了一种小分子定向单壁碳纳米管(SWNTs)自组装测定法。 dT 22 ·dA 22 ·dT 22 和dA 22 由三链体形成诱导剂coralyne产生。已通过圆二色性,光散射(LS)光谱,扫描电子显微镜(SEM),原子力显微镜(AFM),电泳迁移率漂移分析研究了这一点,并通过使用DNA随机序列进行了支持。相反,当使用的小分子不能诱导dT 22 ·dA 22 ·dT 22 三重态时,SWNT在相同的实验条件下不会聚集编队。因此,在我们的研究中,这种新颖的小分子定向单壁碳纳米管自组装实验也已用于筛选三重诱导剂。

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