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基于纸基微流控的即时检测设备在癌症早期诊断中的生物标志物检测:最新进展。

Biomarker Detection in Early Diagnosis of Cancer: Recent Achievements in Point-of-Care Devices Based on Paper Microfluidics.

机构信息

Department of Biotechnology, Institute of Natural Sciences, Ege University, Izmir 35100, Turkey.

Department of Bioengineering, Institute of Natural Sciences, Ege University, Izmir 35100, Turkey.

出版信息

Biosensors (Basel). 2023 Mar 15;13(3):387. doi: 10.3390/bios13030387.

Abstract

Microfluidics is very crucial in lab-on-a-chip systems for carrying out operations in a large-scale laboratory environment on a single chip. Microfluidic systems are miniaturized devices in which the fluid behavior and control can be manipulated on a small platform, with surface forces on the platform being greater than volumetric forces depending on the test method used. In recent years, paper-based microfluidic analytical devices (μPADs) have been developed to be used in point-of-care (POC) technologies. μPADs have numerous advantages, including ease of use, low cost, capillary action liquid transfer without the need for power, the ability to store reagents in active form in the fiber network, and the capability to perform multiple tests using various measurement techniques. These benefits are critical in the advancement of paper-based microfluidics in the fields of disease diagnosis, drug application, and environment and food safety. Cancer is one of the most critical diseases for early detection all around the world. Detecting cancer-specific biomarkers provides significant data for both early diagnosis and controlling the disease progression. μPADs for cancer biomarker detection hold great promise for improving cure rates, quality of life, and minimizing treatment costs. Although various types of bioanalytical platforms are available for the detection of cancer biomarkers, there are limited studies and critical reviews on paper-based microfluidic platforms in the literature. Hence, this article aims to draw attention to these gaps in the literature as well as the features that future platforms should have.

摘要

微流控技术在微流控芯片系统中非常关键,可以在单个芯片上完成大规模实验室环境下的操作。微流控系统是一种微型化的设备,在这种设备中,流体的行为和控制可以在一个小平台上进行操作,而平台上的表面力大于体积力,具体取决于所使用的测试方法。近年来,基于纸张的微流控分析器件(μPADs)已经被开发出来,用于即时检测(POC)技术。μPADs 具有许多优点,包括易于使用、低成本、无需电源即可通过毛细作用进行液体传输、能够将试剂以活性形式储存在纤维网络中,以及能够使用各种测量技术进行多种测试。这些优势对于推动纸张微流控技术在疾病诊断、药物应用以及环境和食品安全领域的发展至关重要。癌症是全球范围内最需要早期检测的疾病之一。检测癌症特异性生物标志物为早期诊断和控制疾病进展提供了重要数据。用于癌症生物标志物检测的 μPADs 有望提高治愈率、生活质量并降低治疗成本。尽管有多种类型的生物分析平台可用于检测癌症生物标志物,但文献中关于基于纸张的微流控平台的研究和综述非常有限。因此,本文旨在引起人们对文献中的这些空白以及未来平台应具备的特点的关注。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4200/10046104/3163e4887089/biosensors-13-00387-g002.jpg

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