Extended functionalities of paper-based analytical devices using hydrogels for biomedical applications

IF 2.8 4区 工程技术 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY
Ignasia Handipta Mahardika, Sarath Kin, Oh-Sun Kwon, Kwanwoo Shin
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引用次数: 1

Abstract

Paper-based analytical devices are a strong candidate for development due to the global need for accurate, easy-to-use, and cost-effective tools. Paper offers potential as a substrate for biomedical diagnostic devices, but on its own it is limited in versatility. By combining paper with hydrogel, researchers are able to improve automation, sensitivity, affordability, flexibility, and speed. Hydrogel, a highly biocompatible material, enhances fluid flow control and the biocompatibility of paper for functional interaction with biomolecules. Hydrogel-coated paper has been utilized for various applications, including separation and detection, microfluidics, and cell culture. Here we summarize the paper-based analytical tools with hydrogel incorporated into the paper substrate for biomedical purposes. The use of hydrogel-coated paper offers new opportunities for advanced analytical tools with improved sensitivity and functionality.
生物医学应用中使用水凝胶的纸质分析设备的扩展功能
基于纸张的分析设备是开发的有力候选者,因为全球需要准确、易于使用和具有成本效益的工具。纸张作为生物医学诊断设备的基底具有潜力,但其本身的通用性有限。通过将纸张与水凝胶相结合,研究人员能够提高自动化、灵敏度、可负担性、灵活性和速度。水凝胶是一种高度生物相容性的材料,可增强流体流动控制和纸张与生物分子功能相互作用的生物相容性。水凝胶涂布纸已被用于各种应用,包括分离和检测、微流体和细胞培养。在这里,我们总结了将水凝胶结合到纸基质中用于生物医学目的的纸基分析工具。水凝胶涂层纸的使用为提高灵敏度和功能的先进分析工具提供了新的机会。
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来源期刊
Flexible and Printed Electronics
Flexible and Printed Electronics MATERIALS SCIENCE, MULTIDISCIPLINARY-
CiteScore
4.80
自引率
9.70%
发文量
101
期刊介绍: Flexible and Printed Electronics is a multidisciplinary journal publishing cutting edge research articles on electronics that can be either flexible, plastic, stretchable, conformable or printed. Research related to electronic materials, manufacturing techniques, components or systems which meets any one (or more) of the above criteria is suitable for publication in the journal. Subjects included in the journal range from flexible materials and printing techniques, design or modelling of electrical systems and components, advanced fabrication methods and bioelectronics, to the properties of devices and end user applications.
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