Labarre Paul, Gerlach Jay, Wilmoth Jared, Beddoe Andrew, Singleton Jered, Weigl Bernhard
PATH, Seattle, WA, USA.
Annu Int Conf IEEE Eng Med Biol Soc. 2010;2010:1097-9. doi: 10.1109/IEMBS.2010.5627346.
We have achieved the first complete, non-instrumented nucleic acid amplification test (NAAT) using a calcium oxide heat source thermally linked to an engineered phase change material. These two components alone maintain a thermal profile suitable for the loop-mediated isothermal amplification assay. Starting with computational fluid dynamics analysis, we identified nominal geometry for the exothermic reaction chamber, phase change material chamber, thermal insulation, and packaging. Using this model, we designed and fabricated an alpha prototype assay platform. We have verified the function of this multi-pathogen-capable platform with both fluorescent and visual turbidity indications using samples spiked with malaria DNA. Both the exothermically heated platform samples and samples heated on a Perkin-Elmer GeneAmp9600 thermocycler were first incubated at 62°C for 45 minutes, then heated to 95°C to terminate enzyme activity, then analyzed. Results from the exothermically heated, non-instrumented platform were comparable to those from the thermocycler. These developments will enable point-of-care diagnostics using accurate NAATs which until now have required a well-equipped laboratory. The aim of this research is to provide pathogen detection with NAAT-level sensitivity in low-resource settings where assays such as immunochromatographic strip tests are successfully used but where there is no access to the infrastructure and logistics required to operate and maintain instrument-based diagnostics.
我们利用与工程相变材料热连接的氧化钙热源,实现了首个完整的、无需仪器的核酸扩增检测(NAAT)。仅这两个组件就能维持适合环介导等温扩增检测的热分布。从计算流体动力学分析开始,我们确定了放热反应室、相变材料室、隔热层和包装的标称几何形状。利用该模型,我们设计并制造了一个α原型检测平台。我们使用添加了疟疾DNA的样本,通过荧光和视觉浊度指示验证了这个具备检测多种病原体能力的平台的功能。放热加热平台上的样本和在珀金埃尔默GeneAmp9600热循环仪上加热的样本均先在62°C孵育45分钟,然后加热至95°C以终止酶活性,随后进行分析。放热加热的无仪器平台的结果与热循环仪的结果相当。这些进展将使人们能够在护理点使用准确的NAAT进行诊断,而到目前为止,这还需要装备精良的实验室。本研究的目的是在资源匮乏的环境中提供具有NAAT水平灵敏度的病原体检测,在这些环境中,免疫层析试纸条检测等检测方法已成功应用,但无法获得操作和维护基于仪器的诊断所需的基础设施和后勤保障。