Instituto de Microelectrónica de Barcelona (IMB-CNM), CSIC, Campus UAB, Bellaterra, 08193 Barcelona, Spain.
CIBER de Bioingeniería, Biomateriales y Nanomedicina (CIBER-BBN), Jordi Girona 18-26, 08034 Barcelona, Spain.
Biosensors (Basel). 2021 Aug 28;11(9):303. doi: 10.3390/bios11090303.
The development of diagnostic tools for measuring a wide spectrum of target analytes, from biomarkers to other biochemical parameters in biological fluids, has experienced a significant growth in the last decades, with a good number of such tools entering the market. Recently, a clear focus has been put on miniaturized wearable devices, which offer powerful capabilities for real-time and continuous analysis of biofluids, mainly sweat, and can be used in athletics, consumer wellness, military, and healthcare applications. Sweat is an attractive biofluid in which different biomarkers could be noninvasively measured to provide rapid information about the physical state of an individual. Wearable devices reported so far often provide discrete (single) measurements of the target analytes, most of them in the form of a yes/no qualitative response. However, quantitative biomarker analysis over certain periods of time is highly demanded for many applications such as the practice of sports or the precise control of the patient status in hospital settings. For this, a feasible combination of fluidic elements and sensor architectures has been sought. In this regard, this paper shows a concise overview of analytical tools based on the use of capillary-driven fluidics taking place on paper or fabric devices integrated with solid-state sensors fabricated by thick film technologies. The main advantages and limitations of the current technologies are pointed out together with the progress towards the development of functional devices. Those approaches reported in the last decade are examined in detail.
在过去几十年中,用于测量生物体液中广泛目标分析物(包括生物标志物和其他生化参数)的诊断工具得到了快速发展,其中许多工具已经进入市场。最近,人们明显关注小型可穿戴设备,这些设备具有实时和连续分析生物流体(主要是汗液)的强大功能,可用于运动、消费者健康、军事和医疗保健应用。汗液是一种有吸引力的生物流体,可以通过非侵入性测量其中的不同生物标志物来快速提供有关个体身体状态的信息。迄今为止报道的可穿戴设备通常提供目标分析物的离散(单次)测量,其中大多数以定性响应的“是/否”形式提供。然而,对于许多应用(如运动实践或在医院环境中精确控制患者状态),需要在一段时间内进行定量生物标志物分析。为此,人们一直在寻找可行的流体元件和传感器结构组合。在这方面,本文简要概述了基于在纸或织物设备上发生的基于毛细作用的分析工具,这些设备与通过厚膜技术制造的固态传感器集成在一起。本文指出了当前技术的主要优点和局限性,以及朝着开发功能性设备的进展。详细检查了过去十年中报道的那些方法。