Reyes Darwin R, van Heeren Henne, Guha Suvajyoti, Herbertson Luke, Tzannis Alexios P, Ducrée Jens, Bissig Hugo, Becker Holger
National Institute of Standards and Technology, 100 Bureau Drive, MS8120, Gaithersburg, MD, 20899 USA.
Lab Chip. 2021 Jan 5;21(1):9-21. doi: 10.1039/d0lc00963f.
Worldwide, the microfluidics industry has grown steadily over the last 5 years, with the market for microfluidic medical devices experiencing a compound growth rate of 22%. The number of submissions of microfluidic-based devices to regulatory agencies such as the U.S. Food & Drug Administration (FDA) has also steadily increased, creating a strong demand for the development of consistent and accessible tools for evaluating microfluidics-based devices. The microfluidics community has been slow, or even reluctant, to adopt standards and guidelines, which are needed for harmonization and for assisting academia, researchers, designers, and industry across all stages of product development. Appropriate assessments of device performance also remain a bottleneck for microfluidic devices. Standards reside at the core of mature supply chains generating economies of scale and forging a consistent pathway to match stakeholder expectations, thus creating a foundation for successful commercialization. This article provides a unique perspective on the need for the development of standards specific to the emerging biomedical field of microfluidics. Our aim is to facilitate innovation by encouraging the microfluidics community to work together to help bridge knowledge gaps and improve efficiency in getting high-quality microfluidic medical devices to market faster. We start by acknowledging the progress that has been made in various areas over the past decade. We then describe the existing gaps in the standardization of flow control, interconnections, component integration, manufacturing, assembly, packaging, reliability, performance of microfluidic elements and safety testing of microfluidic devices throughout the entire product life cycle.
在全球范围内,微流控产业在过去5年中稳步增长,微流控医疗设备市场的复合增长率为22%。向美国食品药品监督管理局(FDA)等监管机构提交的基于微流控技术的设备数量也在稳步增加,这使得人们对开发用于评估基于微流控技术的设备的统一且易用的工具产生了强烈需求。微流控领域采用标准和指南的速度一直很慢,甚至很不情愿,而这些标准和指南对于协调以及协助学术界、研究人员、设计师和行业在产品开发的各个阶段都是必要的。对设备性能进行适当评估仍然是微流控设备的一个瓶颈。标准是成熟供应链的核心,能产生规模经济,并打造一条符合利益相关者期望的一致路径,从而为成功商业化奠定基础。本文对新兴的微流控生物医学领域特定标准的制定需求提供了独特视角。我们的目标是通过鼓励微流控领域的各方共同努力,帮助弥合知识差距,提高将高质量微流控医疗设备更快推向市场的效率,从而促进创新。我们首先认可过去十年在各个领域取得的进展。然后我们描述了在整个产品生命周期中,微流控设备在流量控制、互连、组件集成、制造、组装、包装、可靠性、微流控元件性能以及安全测试等方面的标准化存在的现有差距。