Department of Biomedical Engineering, Duke University, Durham, North Carolina, USA.
ACS Nano. 2012 Dec 21;6(12):10676-83. doi: 10.1021/nn3038594. Epub 2012 Nov 7.
We present an attractive new system for the specific and sensitive detection of the malaria-causing Plasmodium parasites. The system relies on isothermal conversion of single DNA cleavage-ligation events catalyzed specifically by the Plasmodium enzyme topoisomerase I to micrometer-sized products detectable at the single-molecule level. Combined with a droplet microfluidics lab-on-a-chip platform, this design allowed for sensitive, specific, and quantitative detection of all human-malaria-causing Plasmodium species in single drops of unprocessed blood with a detection limit of less than one parasite/μL. Moreover, the setup allowed for detection of Plasmodium parasites in noninvasive saliva samples from infected patients. During recent years malaria transmission has declined worldwide, and with this the number of patients with low-parasite density has increased. Consequently, the need for accurate detection of even a few parasites is becoming increasingly important for the continued combat against the disease. We believe that the presented droplet microfluidics platform, which has a high potential for adaptation to point-of-care setups suitable for low-resource settings, may contribute significantly to meet this demand. Moreover, potential future adaptation of the presented setup for the detection of other microorganisms may form the basis for the development of a more generic platform for diagnosis, fresh water or food quality control, or other purposes within applied or basic science.
我们提出了一种用于特异性和灵敏检测引起疟疾的疟原虫的有吸引力的新系统。该系统依赖于单链 DNA 切割 - 连接反应的等温转换,这些反应由疟原虫拓扑异构酶 I 特异性催化,形成可在单分子水平检测到的微米级产物。结合液滴微流控芯片实验室平台,这种设计允许在未经处理的血液单滴中灵敏、特异、定量地检测所有引起人类疟疾的疟原虫,检测限低于 1 个寄生虫/μL。此外,该装置还可以在受感染患者的非侵入性唾液样本中检测疟原虫寄生虫。近年来,全球疟疾传播有所下降,同时低寄生虫密度的患者数量也有所增加。因此,即使是检测少数寄生虫也变得越来越重要,这对于继续对抗这种疾病至关重要。我们相信,所提出的液滴微流控平台具有高度适用于适合资源有限环境的即时护理设置的潜力,可能会对此需求做出重大贡献。此外,未来对所提出的设置进行其他微生物检测的潜在适应可能为诊断、淡水或食品质量控制或应用或基础科学中的其他目的开发更通用的平台奠定基础。