用于即时检测的多糖水凝胶辅助生物传感平台
Polysaccharide Hydrogel-Assisted Biosensing Platforms for Point-of-Care Use.
作者信息
Kim Sang-Uk, Kim Young Jun, Lee Tae Hee
机构信息
Korea Science and Technology Holdings, Ltd., 593, Daedoek-Daero, Yuseong-Gu, Daejeon 34112, Republic of Korea.
School of Integrative Engineering, Chung-Ang University, 4, Heukseok-Ro, Dongjak-Gu, Seoul 06974, Republic of Korea.
出版信息
Biosensors (Basel). 2025 Jan 2;15(1):13. doi: 10.3390/bios15010013.
Point-of-care (POC) use is one of the essential goals of biosensing platforms. Because the increasing demand for testing cannot be met by a centralized laboratory-based strategy, rapid and frequent testing at the right time and place will be key to increasing health and safety. To date, however, there are still difficulties in developing a simple and affordable, as well as sensitive and effective, platform that enables POC use. In terms of materials, hydrogels, a unique family of water-absorbing biocompatible polymers, have emerged as promising components for the development of biosensors. Combinations of hydrogels have various additional applications, such as in hydrophilic coatings, nanoscale filtration, stimuli-responsive materials, signal enhancement, and biodegradation. In this review, we highlight the recent efforts to develop hydrogel-assisted biosensing platforms for POC use, especially focusing on polysaccharide hydrogels like agarose, alginate, chitosan, and so on. We first discuss the pros and cons of polysaccharide hydrogels in practical applications and then introduce case studies that test different formats, such as paper-based analytical devices (PADs), microfluidic devices, and independent platforms. We believe the analysis in the present review provides essential information for the development of biosensing platforms for POC use in resource-limited settings.
即时检测(POC)应用是生物传感平台的重要目标之一。由于基于集中实验室的策略无法满足日益增长的检测需求,在合适的时间和地点进行快速且频繁的检测将是提高健康和安全水平的关键。然而,迄今为止,开发一个简单、经济实惠且灵敏有效的即时检测平台仍存在困难。在材料方面,水凝胶作为一类独特的吸水性生物相容性聚合物,已成为生物传感器开发中颇具前景的组件。水凝胶的组合还有各种其他应用,如用于亲水涂层、纳米级过滤、刺激响应材料、信号增强和生物降解等。在本综述中,我们重点介绍了近期为开发用于即时检测的水凝胶辅助生物传感平台所做的努力,尤其关注琼脂糖、藻酸盐、壳聚糖等多糖水凝胶。我们首先讨论多糖水凝胶在实际应用中的优缺点,然后介绍测试不同形式的案例研究,如纸质分析装置(PADs)、微流控装置和独立平台。我们相信本综述中的分析为在资源有限的环境中开发用于即时检测的生物传感平台提供了重要信息。