Lumora Ltd., Ely, United Kingdom.
PLoS One. 2010 Nov 30;5(11):e14155. doi: 10.1371/journal.pone.0014155.
The real-time monitoring of polynucleotide amplification is at the core of most molecular assays. This conventionally relies on fluorescent detection of the amplicon produced, requiring complex and costly hardware, often restricting it to specialised laboratories.
Here we report the first real-time, closed-tube luminescent reporter system for nucleic acid amplification technologies (NAATs) enabling the progress of amplification to be continuously monitored using simple light measuring equipment. The Bioluminescent Assay in Real-Time (BART) continuously reports through bioluminescent output the exponential increase of inorganic pyrophosphate (PPi) produced during the isothermal amplification of a specific nucleic acid target. BART relies on the coupled conversion of inorganic pyrophosphate (PPi) produced stoichiometrically during nucleic acid synthesis to ATP by the enzyme ATP sulfurylase, and can therefore be coupled to a wide range of isothermal NAATs. During nucleic acid amplification, enzymatic conversion of PPi released during DNA synthesis into ATP is continuously monitored through the bioluminescence generated by thermostable firefly luciferase. The assay shows a unique kinetic signature for nucleic acid amplifications with a readily identifiable light output peak, whose timing is proportional to the concentration of original target nucleic acid. This allows qualitative and quantitative analysis of specific targets, and readily differentiates between negative and positive samples. Since quantitation in BART is based on determination of time-to-peak rather than absolute intensity of light emission, complex or highly sensitive light detectors are not required.
The combined chemistries of the BART reporter and amplification require only a constant temperature maintained by a heating block and are shown to be robust in the analysis of clinical samples. Since monitoring the BART reaction requires only a simple light detector, the iNAAT-BART combination is ideal for molecular diagnostic assays in both laboratory and low resource settings.
聚合酶链反应的实时监测是大多数分子检测的核心。这通常依赖于对扩增产物的荧光检测,需要复杂且昂贵的硬件,通常将其限制在专门的实验室中。
本文报道了首个用于核酸扩增技术(NAATs)的实时、闭管发光报告系统,该系统能够使用简单的光测量设备连续监测扩增的进展。实时生物发光分析(BART)通过生物发光输出连续报告在等温扩增特定核酸靶标过程中产生的无机焦磷酸(PPi)的指数增加。BART 依赖于在核酸合成过程中产生的无机焦磷酸(PPi)与酶 ATP 硫酸酯酶的化学计量偶联转化为 ATP,因此可以与广泛的等温 NAAT 偶联。在核酸扩增过程中,通过热稳定萤火虫荧光素酶产生的生物发光,连续监测在 DNA 合成过程中释放的 PPi 转化为 ATP 的酶促转化。该测定法对核酸扩增显示出独特的动力学特征,具有易于识别的光输出峰,其时间与原始靶核酸的浓度成正比。这允许对特定靶标进行定性和定量分析,并易于区分阴性和阳性样本。由于 BART 中的定量基于确定峰值时间而不是光发射的绝对强度,因此不需要复杂或高灵敏度的光探测器。
BART 报告和扩增的组合化学仅需要加热块维持的恒定温度,并且在分析临床样本时表现出很强的稳健性。由于监测 BART 反应仅需要简单的光探测器,因此 iNAAT-BART 组合非常适合实验室和低资源环境中的分子诊断检测。