首页> 外文会议>Micro-NanoMechatronics and Human Science,MHS, 2008 International Symposium on >Single-Molecule Observations of Giant DNA and Synthetic Polyelectrolyte by Labeling with Semiconductor 'Quantum Dots'
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Single-Molecule Observations of Giant DNA and Synthetic Polyelectrolyte by Labeling with Semiconductor 'Quantum Dots'

机译:半导体“量子点”标记对巨分子DNA和合成聚电解质的单分子观察

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摘要

Semiconductors nanoparticles (quantum dots) possess outstanding optical properties compared to conventional organic fluorescent dyes. At present, quantum dots are widely used for observation of cells and tissues, labeling short oligonucleotide sequences for detection of oligonucleotide hybridization, and other biological purposes. On the other hand, labeling of long polyelectrolytes including genome DNAs with quantum dots has not been examined yet. In this report we present results of our investigation on long DNA molecules and long synthetic polyelectrolyte (sodium polysterenesulfonate) labeling by commercially available quantum dots (Qdots??, Invitrogen, USA) as a first protocol for quantum dot based single molecule observation of long polymer chains. We optimized experimental conditions for observation of single-molecule DNA and sodium polystyrene sulfonate chain performed comparative analysis of the possibility to use Qdots for tracking DNA and polyelectrolyte conformational transitions such as "coil-globule" transition.
机译:与常规有机荧光染料相比,半导体纳米粒子(量子点)具有出色的光学性能。目前,量子点被广泛用于细胞和组织的观察,标记短的寡核苷酸序列以检测寡核苷酸杂交以及其他生物学目的。另一方面,尚未检验包括量子点的长聚电解质(包括基因组DNA)的标记。在本报告中,我们介绍了我们对长DNA分子和长合成聚电解质(聚苯乙烯磺酸钠)的研究结果,这些结果由市售量子点(Qdots ??,Invitrogen,美国)进行标记,作为基于量子点的单分子长聚合物观察的第一个协议链。我们优化了观察单分子DNA和聚苯乙烯磺酸钠链的实验条件,对使用Qdots追踪DNA和聚电解质构象转变(例如“线圈-小球”转变)的可能性进行了比较分析。

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