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Purification of HIV RNA from Serum Using a Polymer Capture Matrix in a Microfluidic Device

机译:在微流控设备中使用聚合物捕获基质从血清中纯化HIV RNA

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In this report, we demonstrate the purification of DNA and RNA from a 10percent serum sample using an oligonucleotide capture matrix. This approach provides a one-stage, completely aqueous system capable of purifying both RNA and DNA for downstream PCR amplification. The advantages of utilizing the polymer capture matrix method in place of the solid-phase extraction method is that the capture matrix eliminates both guanidine and the 2-propanol wash that can inhibit downstream PCR and competition with proteins for the binding sites that can limit the capacity of the device. This method electrophoreses a biological sample (e.g., serum) containing the nucleic acid target through a polymer matrix with covalently bound oligonucleotides. These capture oligonucleotides selectively hybridize and retain the target nucleic acid, while the other biomolecules and reagents (e.g., SDS) pass through the matrix to waste. Following this purification step, the solution can be heated above the melting temperature of the capture sequence to release the target molecule, which is then electrophoresed to a recovery chamber for subsequent PCR amplification. We demonstrate that the device can be applied to purify both DNA and RNA from serum. The gag region of HIV at a starting concentration of 37.5 copies per microliter was successfully purified from a 10percent serum sample demonstrating the applicability of this method to detect viruses present in low copy numbers.
机译:在本报告中,我们演示了使用寡核苷酸捕获基质从10%的血清样品中纯化DNA和RNA的方法。此方法提供了一个阶段的完全水性系统,能够纯化RNA和DNA以便进行下游PCR扩增。利用聚合物捕获基质方法代替固相萃取方法的优势在于,捕获基质消除了胍和2-丙醇洗涤,后者可抑制下游PCR并与蛋白质竞争结合位点,从而限制了能力设备的该方法通过具有共价结合的寡核苷酸的聚合物基质对含有核酸靶标的生物样品(例如血清)进行电泳。这些捕获寡核苷酸选择性地杂交并保留靶核酸,而其他生物分子和试剂(例如SDS)穿过基质而浪费。在此纯化步骤之后,可以将溶液加热到捕获序列的解链温度以上,以释放目标分子,然后将其电泳到回收室进行后续的PCR扩增。我们证明该设备可用于从血清中纯化DNA和RNA。从浓度为10%的血清样品中成功纯化出起始浓度为37.5拷贝/微升的HIV堵嘴区域,证明该方法适用于检测低拷贝数的病毒。

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