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Construction and investigation of a DNA sensing system based on a magnetic molecular beacon probe

机译:基于磁性分子信标探针的DNA传感系统的构建和研究

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We presented a fast, specific, and sensitive DNA sensing system, which composed of a CdTe/Fe3O4 magnetic core-shell quantum dots (energy donor), a commercial quencher (BHQ2; energy acceptor), and a designed single strand Toxoplasma gondii DNA. The designed single strand Toxoplasma gondii DNA was applied to link the energy donor and acceptor, and target DNA was detected based on mechanism of fluorescence resonance energy transfer. The CdTe quantum dots, Fe3O4 magnetic nanoparticles, CdTe/Fe3O4magnetic core-shell quantum dots, and sensing probe were step-wisely prepared. Properties of synthesized quantum dots were investigated by transmission electron microscopy and fluorescence spectrum, respectively. Specificity and sensitivity of sensing probe was determined by measuring the recovery of fluorescence intensity. The resulting data revealed the sensing system was successfully fabricated, and which has relative high sensitivity and specificity. Moreover, a simple modeling of the current sensing system/probe was primarily created, and which was utilized to theoretically illustrate and quantitatively investigate some surface properties of the sensing probe. We expect the current modeling can profit the current research and promote the sensitivity and specificity of the sensing system.
机译:我们提出了一种快速,特异性和灵敏的DNA传感系统,该系统由CdTe / Fe 3 O 4 磁性核-壳量子点(能量供体)组成,该商品淬灭剂(BHQ 2 ;能量受体)和设计的单链弓形虫弓形虫DNA。应用设计的单链弓形虫DNA连接能量供体和受体,并基于荧光共振能量转移机理检测靶DNA。 CdTe量子点,Fe 3 O 4 磁性纳米粒子,CdTe / Fe 3 O 4 磁性核-壳逐步制备量子点和传感探针。分别通过透射电子显微镜和荧光光谱研究了合成的量子点的性质。通过测量荧光强度的恢复来确定传感探针的特异性和敏感性。所得数据表明该传感系统已成功制造,并且具有相对较高的灵敏度和特异性。此外,最初创建了电流感测系统/探针的简单模型,并将其用于从理论上说明和定量研究感测探针的某些表面特性。我们希望当前的建模可以使当前的研究受益,并提高传感系统的灵敏度和特异性。

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