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Magnetic separation and detection of a cellulase gene using core–shell nanoparticle probes towards a Q-PCR assay

机译:使用核壳纳米颗粒探针对Q-PCR分析进行纤维素酶基因的磁分离和检测

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摘要

A magnetic separation and detection method for a target sequence of a gene encoding cellulase using biocompatible core–shell nanoparticle probes was developed. An aminated capture probe was conjugated with biocompatible Fe3O4–SiO2–Au core–shell nanoparticles. The target probe and signal probe were hybridized with the capture probe on the surface of the inorganic DNA carrier, which resulted in core–shell nanoparticle probes. In the presence of an external magnetic field, it is convenient and time-saving to realize the detection of the cellulase gene in Trichoderma reesei (T. reesei) by liquid fermentation and subsequent magnetic separation. Quantitative PCR (Q-PCR) was performed to give absolute quantification of the concentration of the target nucleic acid, and the Q-PCR result was compared to that of the electrochemical method. The optimized experimental conditions were studied to maximize the hybridization efficiency and detection sensitivity. The amperometric current response was linearly related to the common logarithm of the target nucleic acid concentration in the range of 1.0 × 10?13 to 1.0 × 10?9 M, with a detection limit of 1.2 × 10?14 M...
机译:开发了一种磁性分离和检测方法,该方法使用生物相容性核-壳纳米粒子探针对编码纤维素酶的基因进行了靶序列分析。胺化捕获探针与生物相容性Fe3O4–SiO2–Au核-壳纳米颗粒偶联。目标探针和信号探针与无机DNA载体表面上的捕获探针杂交,形成核-壳纳米粒子探针。在存在外部磁场的情况下,通过液体发酵和随后的磁分离来检测里氏木霉(T. reesei)中的纤维素酶基因很方便且省时。进行定量PCR(Q-PCR)以对目标核酸的浓度进行绝对定量,并将Q-PCR结果与电化学方法进行比较。研究了优化的实验条件,以最大化杂交效率和检测灵敏度。安培电流响应与目标核酸浓度在1.0×10?13至1.0×10?9 M范围内的对数线性相关,检出限为1.2×10?14 M ...

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