首页> 外文会议>2011 International Conference on Control, Automation and Systems Engineering (CASE) >Primary Designation and Characterization of a Molecular Beacon DNA Sensing Probe
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Primary Designation and Characterization of a Molecular Beacon DNA Sensing Probe

机译:分子信标DNA传感探针的初步设计和表征

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In the current research, a fast, specific, and sensitive sensing probe was designed to detect Toxoplasma gondii DNA based on mechanism of fluorescence resonance energy transfer (FRET), and a magnetic-fluorescent CdTe/Fe3O4 quantum dots (mQDs) was utilized as energy donor, and the BHQ-2 was used as energy acceptor, respectively. The mQDs were prepared stepwisely using Fe3O4 as magnetic core and CdTe as luminescent shell at ambient temperature. The sensing probe was fabricated through labeling a stem-loop Toxoplasma gondii DNA oligonucleotide with mQDs at the 5???? end and BHQ-2 at 3???? end, respectively. The resulting sensing probe can be simply isolated and purified from the reactant with a common magnet in 5min. Properties of mQDs and sensing probe were investigated by transmission electron microscopy (TEM) and fluorescence spectrum (FS). The TEM data demonstrated that the size of mQDs was ~25nm. The FS data indicated twice fluorescence recovery (FR) was observed when the complete complimentary target Toxoplasma gondii DNA was introduced. Moreover, the investigation of speicificity of current sensing probe showed that only weak FR was observed when the target DNA with one-mismatch base pair was added, this result revealed the sensing probe has high sensitivity and specificity. The current sensing probe will has great potential applications in the life science and related research.
机译:在当前的研究中,基于荧光共振能量转移(FRET)的原理,设计了一种快速,特异性和灵敏的传感探针来检测弓形虫DNA,并利用磁荧光CdTe / Fe3O4量子点(mQDs)作为能量。供体,BHQ-2分别用作能量受体。在室温下,以Fe3O4为磁芯,CdTe为发光壳,逐步制备mQD。传感探针是通过在5 ????处用mQD标记茎环弓形虫DNA寡核苷酸而制成的。结束和BHQ-2在3 ????分别结束。所得的传感探针可以在5分钟内用普通磁铁简单地从反应物中分离和纯化。通过透射电子显微镜(TEM)和荧光光谱(FS)研究了mQD和传感探针的特性。 TEM数据表明,mQD的大小约为25nm。 FS数据表明,当引入完整的互补靶标弓形虫DNA时,观察到两倍的荧光恢复(FR)。此外,对电流传感探针的特异性的研究表明,当添加具有一个不匹配碱基对的靶DNA时,仅观察到弱的FR,该结果表明该传感探针具有高灵敏度和特异性。电流传感探头将在生命科学和相关研究中具有巨大的潜在应用。

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