Natu Rucha, Herbertson Luke, Sena Grazziela, Strachan Kate, Guha Suvajyoti
Division of Applied Mechanics, Office of Science and Engineering Laboratories, Center for Devices and Radiological Health, Silver Spring, MD 20993, USA.
Micromachines (Basel). 2023 Jun 24;14(7):1293. doi: 10.3390/mi14071293.
In recent years, the U.S. Food and Drug Administration (FDA) has seen an increase in microfluidic medical device submissions, likely stemming from recent advancements in microfluidic technologies. This recent trend has only been enhanced during the COVID-19 pandemic, as microfluidic-based test kits have been used for diagnosis. To better understand the implications of this emerging technology, device submissions to the FDA from 2015 to 2021 containing microfluidic technologies have been systematically reviewed to identify trends in microfluidic medical applications, performance tests, standards used, fabrication techniques, materials, and flow systems. More than 80% of devices with microfluidic platforms were found to be diagnostic in nature, with lateral flow systems accounting for about 35% of all identified microfluidic devices. A targeted analysis of over 40,000 adverse event reports linked to microfluidic technologies revealed that flow, operation, and data output related failures are the most common failure modes for these device types. Lastly, this paper highlights key considerations for developing new protocols for various microfluidic applications that use certain analytes (e.g., blood, urine, nasal-pharyngeal swab), materials, flow, and detection mechanisms. We anticipate that these considerations would help facilitate innovation in microfluidic-based medical devices.
近年来,美国食品药品监督管理局(FDA)收到的微流控医疗设备申报数量有所增加,这可能源于微流控技术的近期进展。在新冠疫情期间,这种近期趋势进一步增强,因为基于微流控的检测试剂盒已被用于诊断。为了更好地理解这项新兴技术的影响,对2015年至2021年向FDA提交的包含微流控技术的设备申报进行了系统审查,以确定微流控医疗应用、性能测试、使用的标准、制造技术、材料和流动系统的趋势。发现超过80%的具有微流控平台的设备本质上是诊断性的,其中侧向流动系统占所有已识别微流控设备的约35%。对超过40000份与微流控技术相关的不良事件报告进行的针对性分析表明,流动、操作和数据输出相关故障是这些设备类型最常见的故障模式。最后,本文强调了为使用某些分析物(如血液、尿液、鼻咽拭子)、材料、流动和检测机制的各种微流控应用开发新方案的关键考虑因素。我们预计这些考虑因素将有助于促进基于微流控的医疗设备的创新。