Innovation, BioMerieux SA, Chemin de l'Orme, Marcy l'Etoile, France.
J Med Virol. 2017 Sep;89(9):1520-1527. doi: 10.1002/jmv.24806. Epub 2017 Mar 28.
Flavivirus infections are a serious healthcare concern in tropical and subtropical countries. Although well-established laboratory tests can provide early diagnosis of acute dengue or Zika infections, access to these tests is limited in developing countries, presenting an urgent need to develop simple, rapid, and robust diagnostic tools. Microfluidic Paper-based Analytical Devices (μPAD), are typically rapid, cost-effective, user-friendly, and they can be used as diagnostic tools for the diagnosis of these infections at Point of Care settings. Early and prompt diagnosis is crucial to improve patient management and reduce the risk of complications. In the present study, we developed and evaluated a wax-printed paper-based device for the detection of the dengue and Zika non-structural NS1 viral protein in blood and plasma. Experiments have been carried out to increase specificity, while maintaining the required sensitivity. As a consequence, the quality of the raw materials and the washing steps were proved to be crucial. The μPAD was able to detect specifically in 6-8 min 10 ng/mL of protein in various sample types. A prototype for the differential detection of dengue and/or Zika NS1 protein was developed. The reading of the results was simplified by using a dedicated application on a smartphone.
黄病毒感染是热带和亚热带国家严重的医疗保健问题。虽然成熟的实验室检测可以提供急性登革热或寨卡病毒感染的早期诊断,但在发展中国家,这些检测的可及性有限,因此迫切需要开发简单、快速和稳健的诊断工具。微流控纸基分析器件(μPAD)通常快速、经济高效、易于使用,并且可以作为在即时护理环境下用于诊断这些感染的诊断工具。早期和及时的诊断对于改善患者管理和降低并发症风险至关重要。在本研究中,我们开发并评估了一种蜡印纸基设备,用于检测血液和血浆中的登革热和寨卡病毒非结构 NS1 病毒蛋白。已经进行了实验以提高特异性,同时保持所需的灵敏度。因此,原材料的质量和洗涤步骤被证明是至关重要的。μPAD 能够在 6-8 分钟内特异性检测到各种样本类型中 10ng/mL 的蛋白。开发了一种用于差异化检测登革热和/或寨卡 NS1 蛋白的原型。通过在智能手机上使用专用应用程序简化了结果的读取。