Lucigen Corporation Middleton, WI, USA.
Department of Biological Sciences, Auburn University Auburn, AL, USA.
Front Microbiol. 2014 Aug 1;5:395. doi: 10.3389/fmicb.2014.00395. eCollection 2014.
Meeting the goal of providing point of care (POC) tests for molecular detection of pathogens in low resource settings places stringent demands on all aspects of the technology. OmniAmp DNA polymerase (Pol) is a thermostable viral enzyme that enables true POC use in clinics or in the field by overcoming important barriers to isothermal amplification. In this paper, we describe the multiple advantages of OmniAmp Pol as an isothermal amplification enzyme and provide examples of its use in loop-mediated isothermal amplification (LAMP) for pathogen detection. The inherent reverse transcriptase activity of OmniAmp Pol allows single enzyme detection of RNA targets in RT-LAMP. Common methods of nucleic acid amplification are highly susceptible to sample contaminants, necessitating elaborate nucleic acid purification protocols that are incompatible with POC or field use. OmniAmp Pol was found to be less inhibited by whole blood components typical in certain crude sample preparations. Moreover, the thermostability of the enzyme compared to alternative DNA polymerases (Bst) and reverse transcriptases allows pretreatment of complete reaction mixes immediately prior to amplification, which facilitates amplification of highly structured genome regions. Compared to Bst, OmniAmp Pol has a faster time to result, particularly with more dilute templates. Molecular diagnostics in field settings can be challenging due to the lack of refrigeration. The stability of OmniAmp Pol is compatible with a dry format that enables long term storage at ambient temperatures. A final requirement for field operability is compatibility with either commonly available instruments or, in other cases, a simple, inexpensive, portable detection mode requiring minimal training or power. Detection of amplification products is shown using lateral flow strips and analysis on a real-time PCR instrument. Results of this study show that OmniAmp Pol is ideally suited for low resource molecular detection of pathogens.
在资源匮乏的环境中实现即时检测(POC)的目标对技术的各个方面都提出了严格的要求。OmniAmp DNA 聚合酶(Pol)是一种热稳定的病毒酶,通过克服等温扩增的重要障碍,使真正的 POC 在诊所或现场得以应用。本文介绍了 OmniAmp Pol 作为一种等温扩增酶的多种优势,并提供了其在环介导等温扩增(LAMP)中用于病原体检测的实例。OmniAmp Pol 固有的逆转录酶活性允许在 RT-LAMP 中检测 RNA 靶标。常见的核酸扩增方法极易受到样品污染物的影响,因此需要复杂的核酸纯化方案,这与 POC 或现场使用不兼容。发现 OmniAmp Pol 受某些粗制样品制备中常见的全血成分的抑制作用较小。此外,与替代 DNA 聚合酶(Bst)和逆转录酶相比,该酶的热稳定性允许在扩增前立即预处理完整的反应混合物,这有利于高度结构化基因组区域的扩增。与 Bst 相比,OmniAmp Pol 的结果出现时间更快,特别是对于更稀释的模板。由于缺乏冷藏,野外环境中的分子诊断可能具有挑战性。OmniAmp Pol 的稳定性与干燥格式兼容,可在环境温度下长期储存。野外作业的最后一个要求是与常用仪器兼容,或者在其他情况下,与简单、廉价、便携式的检测模式兼容,这些模式只需要最少的培训或电源。通过侧流条和实时 PCR 仪器分析显示了扩增产物的检测结果。本研究结果表明,OmniAmp Pol 非常适合在资源匮乏的环境中进行病原体的低资源分子检测。