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首页> 外文期刊>Journal of molecular recognition: JMR >One‐pot synthesis and characterization CdTe:Zn 2+ 2+ quantum dots and its molecular interaction with calf thymus DNA
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One‐pot synthesis and characterization CdTe:Zn 2+ 2+ quantum dots and its molecular interaction with calf thymus DNA

机译:单壶合成和表征CdTE:Zn 2+ 2+量子点及其与小牛胸腺DNA的分子相互作用

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Abstract Tremendous research efforts have been dedicated to fabricating high‐quality Zn‐doped CdTe quantum dots (QDs) for any potential biomedical applications. In particular, the correlation of issues regarding how QDs interact with DNA is of greatest importance. Herein, a pH‐responsive study of the interactions between CdTe:Zn 2+ quantum dots with 4 different sizes and calf thymus DNA (ctDNA) was conducted using multispectroscopic techniques and electrochemical investigation. Fluorescence studies revealed that this interaction process is predominantly a static process and groove binding was the main binding mode for CdTe:Zn 2+ QDs to ctDNA. The calculated negative values of enthalpy (?45.06?kJ?mol ?1 ) and entropy (?133.62?J?mol ?1 ?K ?1 ) with temperature changes indicated that the hydrogen bonds and van der Waals interactions played major roles in the reaction. Furthermore, circular dichroism spectroscopy and Fourier transform infrared spectrometry analyses indicate that the normal conformation of ctDNA is discombobulated by CdTe:Zn 2+ QDs. In addition, the electrochemical behavior of the affinity of CdTe:Zn 2+ QDs for ctDNA agreed well with the results obtained from fluorescence experiments. This study might be meaningful for understanding the molecular binding mechanism of QDs for DNA and provides a basis for QD‐labeled systems.
机译:摘要巨大的研究努力专用于为任何潜在的生物医学应用制造高质量的Zn掺杂Cdte量子点(QDS)。特别是,关于QDS如何与DNA相互作用的问题的相关性最重要。这里,使用多光谱技术和电化学研究进行CDTE:Zn 2+量子点之间的相互作用的pH-响应性研究,具有4种不同尺寸和小牛胸腺DNA(CTDNA)。荧光研究表明,该相互作用过程主要是静态过程,沟槽结合是CdTe:Zn 2+ QDS至CTDNA的主要结合模式。焓(α45.06?kj?molα1)和温度变化的焓(α406?kj≤1)和熵(α133.62≤k≤k≤1),表明氢键和范德瓦尔斯相互作用发挥了重要作用反应。此外,圆形二中间光谱和傅立叶变换红外光谱分析表明CTDNA的正常构象是通过CDTE:Zn 2+ QDS的硬染色。此外,CDTE的亲和力的电化学行为:CTDNA的CTDNA的QDS与从荧光实验获得的结果吻合很好。该研究可能对理解DNA的QD的分子结合机制有意义,为QD标记的系统提供基础。

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