首页> 美国卫生研究院文献>The Journal of Molecular Diagnostics : JMD >Detection of HIV-1 Minority Variants Containing the K103N Drug-Resistance Mutation Using a Simple Method to Amplify RNA Targets (SMART)
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Detection of HIV-1 Minority Variants Containing the K103N Drug-Resistance Mutation Using a Simple Method to Amplify RNA Targets (SMART)

机译:使用简单的方法来扩增RNA靶点(SMART)检测包含K103N药物抗性突变的HIV-1少数民族变异体

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摘要

The simple method for amplifying RNA targets (SMART) was used to detect K103N, a common HIV-1 reverse transcriptase drug-resistance mutation. Novel amplifiable SMART probes served as reporter molecules for RNA sequences that are captured and separated on a microfluidic platform under zero-flow conditions. Assays were performed both off chip and in a microchip reservoir using a modified version of real-time nucleic acid sequence-based amplification, without the noncyclic phase, and 65°C preheat. A total of 6000 copies/mL of the synthetic sequences were detected within 180 minutes of amplification. Although the sensitivity of research platforms is higher, SMART has the potential to offer comparable sensitivity and speed to commercially available viral load and HIV detection kits. Furthermore, SMART uses an inexpensive, practical, and more accurate isothermal exponential amplification technique. The use of molecular beacons resulted in relatively fast real-time detection (<180 minutes); however, they were also shown to hinder the amplification process when compared with end point detection. Finally, SMART probes were used for modeling of K103N concentrations within an unknown sample. Only 1% of the SMART probes was detected within the wild-type population (6 × 108 copies/mL). These results establish the groundwork for point-of-care drug resistance and viral load monitoring in clinical samples, which can revolutionize HIV patient care globally.
机译:扩增RNA靶标的简单方法(SMART)用于检测K103N,这是一种常见的HIV-1逆转录酶耐药性突变。新型可扩增SMART探针充当RNA序列的报告分子,该分子在零流量条件下在微流体平台上被捕获和分离。使用改良版的基于实时核酸序列的扩增(无需非循环相)和65°C的预热,可以在芯片外和微芯片容器中进行测定。在扩增的180分钟内检测到总共6000拷贝/ mL的合成序列。尽管研究平台的敏感性更高,但SMART有望提供与市售病毒载量和HIV检测试剂盒相当的敏感性和速度。此外,SMART使用便宜,实用且更准确的等温指数扩增技术。分子信标的使用导致相对快速的实时检测(<180分钟);然而,与终点检测相比,它们也显示出阻碍扩增过程的作用。最后,将SMART探针用于未知样品中K103N浓度的建模。在野生型种群中仅检测到1%的SMART探针(6×10 8 拷贝/ mL)。这些结果为临床样本中的即时护理耐药性和病毒载量监测奠定了基础,这可以在全球范围内彻底改变艾滋病毒患者的护理。

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