Gilroy Cameron, Silver Callum D, Kunstmann-Olsen Casper, Miller Lisa M, Johnson Steven D, Krauss Thomas F
Hull York Medical School, Siwards Way, University of York, Heslington, York UK.
School of Physics and Technology, University of York, Heslington, York UK.
NPJ Biosens. 2025;2(1):19. doi: 10.1038/s44328-025-00038-x. Epub 2025 May 2.
The blood test is one of the most performed investigations in clinical practice, with samples typically analysed in a centralised laboratory. Many of these tests monitor routine conditions that would benefit from a point-of-care approach, reducing the burden on practitioners, patients and healthcare systems. Such a decentralised model requires the development of sophisticated, yet easy-to-use technology; however, platforms that combine high-performance with low-cost and simplicity remain scarce. Moreover, most research papers only address a subset of requirements and study specific aspects in isolation. A systems approach that considers the interplay between each element of the technology is clearly required to develop a coherent solution. Here, we present such a systems approach in the context of testing for C-reactive protein (CRP), a commonly requested test in clinical practise that indicates inflammation and is particularly relevant for monitoring patients with chronic diseases, e.g. those with rheumatoid arthritis or who are undergoing cancer therapy. The approach we take here features an entirely passive microfluidic cartridge for blood separation, integrated with a high-performance sensing platform which we have tested in a real-world context. The device is compatible with a handheld detection unit and is simple to use yet can accurately detect CRP levels at clinically relevant levels.
血液检测是临床实践中执行最为频繁的检查之一,样本通常在集中式实验室进行分析。其中许多检测用于监测常规病症,而即时检测方法将使其受益,从而减轻从业者、患者和医疗系统的负担。这种分散式模式需要开发复杂但易于使用的技术;然而,将高性能与低成本及简易性相结合的平台仍然稀缺。此外,大多数研究论文仅满足部分要求,孤立地研究特定方面。显然,需要一种系统方法来考虑技术各要素之间的相互作用,以开发出连贯的解决方案。在此,我们在检测C反应蛋白(CRP)的背景下提出这样一种系统方法,CRP是临床实践中常用的一项检测,用于指示炎症,对于监测慢性病患者(如类风湿性关节炎患者或正在接受癌症治疗的患者)尤为重要。我们在此采用的方法的特点是有一个用于血液分离的完全被动式微流控芯片,它与一个高性能传感平台集成在一起,我们已在实际环境中对该平台进行了测试。该设备与手持式检测单元兼容,使用简单,但能在临床相关水平上准确检测CRP水平。