Department of Biomedical Engineering, Boston University, Boston, MA, USA.
PLoS One. 2013;8(3):e60059. doi: 10.1371/journal.pone.0060059. Epub 2013 Mar 28.
In order to counter the common perception that molecular diagnostics are too complicated to work in low resource settings, we have performed a difficult sample preparation and DNA amplification protocol using instrumentation designed to be operated without wall or battery power. In this work we have combined a nearly electricity-free nucleic acid extraction process with an electricity-free isothermal amplification assay to detect the presence of Clostridium difficile (C. difficile) DNA in the stool of infected patients. We used helicase-dependent isothermal amplification (HDA) to amplify the DNA in a low-cost, thermoplastic reaction chip heated with a pair of commercially available toe warmers, while using a simple Styrofoam insulator. DNA was extracted from known positive and negative stool samples. The DNA extraction protocol utilized an air pressure driven solid phase extraction device run using a standard bicycle pump. The simple heater setup required no electricity or battery and was capable of maintaining the temperature at 65°C±2°C for 55 min, suitable for repeatable HDA amplification. Experiments were performed to explore the adaptability of the system for use in a range of ambient conditions. When compared to a traditional centrifuge extraction protocol and a laboratory thermocycler, this disposable, no power platform achieved approximately the same lower limit of detection (1.25×10(-2) pg of C. difficile DNA) while requiring much less raw material and a fraction of the lab infrastructure and cost. This proof of concept study could greatly impact the accessibility of molecular assays for applications in global health.
为了反驳分子诊断在资源匮乏环境下过于复杂的普遍观点,我们使用无需外部电源或电池即可运行的仪器设备,执行了一项困难的样本制备和 DNA 扩增方案。在这项工作中,我们将一种几乎无需用电的核酸提取过程与无需用电的等温扩增检测相结合,以检测感染患者粪便中艰难梭菌(C. difficile)DNA 的存在。我们使用解旋酶依赖性等温扩增(HDA)在低成本、热塑性反应芯片中扩增 DNA,该芯片由一对市售的足热器加热,同时使用简单的泡沫聚苯乙烯隔热材料。从已知的阳性和阴性粪便样本中提取 DNA。DNA 提取方案使用气压驱动的固相提取设备,由标准自行车气泵驱动。简单的加热器设置无需用电或电池,能够将温度维持在 65°C±2°C 55 分钟,适合重复进行 HDA 扩增。我们进行了实验以探索该系统在各种环境条件下的适应性。与传统的离心提取方案和实验室热循环仪相比,这种一次性、无电源平台的检测下限(1.25×10(-2)pg 的艰难梭菌 DNA)大致相同,但所需的原材料更少,实验室基础设施和成本也更少。这项概念验证研究可能会极大地影响分子检测在全球健康应用中的可及性。