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Toxoplasma gondii DNA Sensor Based on A Novel Ni-magnetic Sensing Probe

机译:基于新型Ni磁感测探针的弓形虫杆菌DNA传感器

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we introduced a fast, specific, and sensitive sensing probe to detect Toxoplasma gondii DNA based on mechanism of fluorescence resonance energy transfer (FRET), and a multifunctional and magnetic-fluorescent CdTe/Ni quantum dots (mQDs) was prepared as energy donor, and BHQ2 was used as energy acceptor, respectively. CdTe/Ni mQDs were synthesized with a more simple method using Ni nanoparticles as core material and CdTe as shell material. The sensing probe was fabricated through labeling a stem-loop Toxoplasma gondii DNA oligonucleotide with CdTe/Ni mQDs at the 5' end and BHQ2 at 3' end, respectively, and the resulting sensing probe can be conveniently isolated and purified with a common magnet. Properties of mQDs and sensing probe were investigated by transmission electron microscopy (TEM), X-ray diffraction (XRD), and fluorescence spectrum (FS) methods. The TEM data demonstrated that the size of Ni nanoparticles was estimated to be ~10nm, and size of CdTe/Ni is 15nm. XRD data showed similar spectrum of CdTe and CdTe/Ni, intensity of Ni (111) typical diffraction peak was detected, which inferred the formation of CdTe on surface of Ni core. An obvious fluorescence recovery (FR) was observed when the complete complimentary target Toxoplasma gondii DNA was introduced comparing with the target DNA with one-basepair-mismatch, 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 gene diagnostics.
机译:我们介绍了一种快速,特异性和敏感的感测探针,以检测基于荧光共振能量转移(FRET)的机制来检测弓形虫的DNA,并制备多官能和磁性荧光CDTE / Ni量子点(MQD)作为能量供体, BHQ2分别用作能量受体。使用Ni纳米粒子作为芯材料和CdTe作为壳材料,用更简单的方法合成Cdte / Ni MQDS。通过在3'末端标记用CdTe / Ni MQD标记用CDTe / Ni MQDS标记茎环毒素Gondii DNA寡核苷酸,并在3'末端标记茎 - 环毒素Gondi核苷酸,并用普通磁体方便地分离并纯化所得的感测探针。通过透射电子显微镜(TEM),X射线衍射(XRD)和荧光谱(FS)方法研究了MQDS和感测探针的性质。 TEM数据证明Ni纳米粒子的尺寸估计为约10nm,CdTe / Ni的尺寸为15nm。 XRD数据显示出类似的CDTE和CDTE / Ni的光谱,检测Ni(111)强度(111)典型的衍射峰,其推断在Ni核心表面上形成CdTe。观察到完全互补的靶毒素弓形虫DNA与靶DNA与单个基座 - 失配相比,观察到明显的荧光回收(FR),这结果显示了感测探针具有高敏感性和特异性。目前的传感探针将在生命科学和基因诊断中具有很大的潜在应用。

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