Department of Mechanical Engineering and Applied Mechanics, School of Engineering and Applied Science, University of Pennsylvania, 216 Towne Building, 220 S. 33rd Street, Philadelphia, PA 19104, USA.
Department of Chemistry, Hanyang University, Seoul 04763, Korea.
Biosensors (Basel). 2021 Oct 7;11(10):375. doi: 10.3390/bios11100375.
The critical risk from airborne infectious diseases, bio-weapons, and harmful bacteria is currently the highest it has ever been in human history. The requirement for monitoring airborne pathogens has gradually increased to defend against bioterrorism or prevent pandemics, especially via simple and low-cost platforms which can be applied in resource-limited settings. Here, we developed a paper-based airborne bacteria collection and DNA extraction kit suitable for simple application with minimal instruments. Airborne sample collection and DNA extraction for PCR analysis were integrated in the paper kit. We created an easy-to-use paper-based air monitoring system using 3D printing technology combined with an air pump. The operation time of the entire process, comprising air sampling, bacterial cell lysis, purification and concentration of DNA, and elution of the DNA analyte, was within 20 min. All the investigations and optimum settings were tested in a custom-designed closed cabinet system. In the fabricated cabinet system, the paper kit operated effectively at a temperature of 25-35 °C and 30-70% relative humidity for air containing 10-10 CFU . This paper kit could be applied for simple, rapid, and cost-effective airborne pathogen monitoring.
空气中传染性疾病、生物武器和有害细菌的临界风险目前处于人类历史上的最高水平。监测空气传播病原体的需求逐渐增加,以抵御生物恐怖主义或预防大流行,特别是需要简单且低成本的平台,以便在资源有限的环境中应用。在这里,我们开发了一种基于纸张的空气传播细菌收集和 DNA 提取试剂盒,适用于简单应用,只需最少的仪器。空气样本收集和用于 PCR 分析的 DNA 提取在纸张试剂盒中集成。我们使用 3D 打印技术结合气泵创建了一个易于使用的基于纸张的空气监测系统。整个过程,包括空气采样、细菌细胞裂解、DNA 的纯化和浓缩以及 DNA 分析物的洗脱,操作时间在 20 分钟内。所有的研究和最佳设置都在定制的封闭柜系统中进行了测试。在制造的柜系统中,该纸张试剂盒在温度为 25-35°C 和相对湿度为 30-70%的条件下,在空气含 10-10 CFU 的情况下能有效运行。该纸张试剂盒可用于简单、快速且具有成本效益的空气传播病原体监测。