Department of Pharmacy, University of Copenhagen, Copenhagen, Denmark.
Department of Pharmacy, University of Copenhagen, Copenhagen, Denmark.
Biosens Bioelectron. 2016 Feb 15;76:213-33. doi: 10.1016/j.bios.2015.08.003. Epub 2015 Aug 13.
The marriage of highly sensitive biosensor designs with the versatility in sample handling and fluidic manipulation offered by lab-on-a-chip systems promises to yield powerful tools for analytical and, in particular, diagnostic applications. The field where these two technologies meet is rapidly and almost violently developing. Yet, solutions where the full potentials are being exploited are still surprisingly rare. In the context of this review, sensor designs are often fairly advanced, whereas the lab-on-a-chip aspect is still rather simplistic in many cases, albeit already offering significant improvements to existing methods. Recent examples, showing a staggering variety of lab-on-a-chip systems for biosensing applications, are presented, tabularized for overview, and briefly discussed.
高度敏感的生物传感器设计与芯片实验室系统提供的多功能样品处理和流体操控相结合,有望为分析,特别是诊断应用带来强大的工具。这两种技术交汇的领域正在迅速发展,几乎是迅猛发展。然而,充分发挥潜力的解决方案仍然出人意料地罕见。在本文的讨论中,传感器设计通常相当先进,而在许多情况下,芯片实验室方面仍然相当简单,尽管已经对现有方法进行了重大改进。本文介绍了生物传感应用的芯片实验室系统的最新实例,对其进行了表格化的概述,并进行了简要讨论。