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基于微流控的血液免疫分析

Microfluidic-based blood immunoassays.

作者信息

Torul Hilal, Arslan Zeynep Çağlayan, Tezcan Tuğba, Kayiş Elif Çalık, Çalımcı Merve, Gumustas Aysen, Yildirim Ender, Külah Haluk, Tamer Uğur

机构信息

Department of Analytical Chemistry, Faculty of Pharmacy, Gazi University, Ankara, Turkey.

Department of Electrical and Electronics Engineering, Middle East Technical University (METU), Ankara, Turkey; METU MEMS Center, Ankara, Turkey.

出版信息

J Pharm Biomed Anal. 2023 May 10;228:115313. doi: 10.1016/j.jpba.2023.115313. Epub 2023 Feb 24.

Abstract

Microfluidics enables the integration of whole protocols performed in a laboratory, including sample loading, reaction, extraction, and measurement steps on a single system, which offers significant advantages thanks to small-scale operation combined with precise fluid control. These include providing efficient transportation mechanisms and immobilization, reduced sample and reagent volumes, fast analysis and response times, lower power requirements, lower cost and disposability, improved portability and sensitivity, and greater integration and automation capability. Immunoassay is a specific bioanalytical method based on the interaction of antigens and antibodies, which is utilized to detect bacteria, viruses, proteins, and small molecules in several areas such as biopharmaceutical analysis, environmental analysis, food safety, and clinical diagnostics. Because of the advantages of both techniques, the combination of immunoassays and microfluidic technology is considered one of the most potential biosensor systems for blood samples. This review presents the current progress and important developments in microfluidic-based blood immunoassays. After providing several basic information about blood analysis, immunoassays, and microfluidics, the review points out in-depth information about microfluidic platforms, detection techniques, and commercial microfluidic blood immunoassay platforms. In conclusion, some thoughts and future perspectives are provided.

摘要

微流控技术能够将实验室中执行的整个协议集成到单个系统上,包括样品加载、反应、提取和测量步骤。由于小规模操作与精确的流体控制相结合,这带来了显著的优势。这些优势包括提供高效的运输机制和固定化、减少样品和试剂体积、快速分析和响应时间、更低的功率需求、更低的成本和可一次性使用、提高便携性和灵敏度,以及更强的集成和自动化能力。免疫测定是一种基于抗原与抗体相互作用的特定生物分析方法,用于生物制药分析、环境分析、食品安全和临床诊断等多个领域中检测细菌、病毒、蛋白质和小分子。由于这两种技术的优势,免疫测定与微流控技术的结合被认为是用于血液样本的最具潜力的生物传感器系统之一。本综述介绍了基于微流控的血液免疫测定的当前进展和重要发展。在提供了有关血液分析、免疫测定和微流控的一些基本信息后,该综述指出了有关微流控平台、检测技术和商业微流控血液免疫测定平台的深入信息。最后给出了一些思考和未来展望。

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