Andreescu Silvana, Marty Jean-Louis
Department of Chemistry, Clarkson University, Potsdam, New York, NY-13699-5810, USA.
Biomol Eng. 2006 Mar;23(1):1-15. doi: 10.1016/j.bioeng.2006.01.001. Epub 2006 Jan 27.
Over the last decades, cholinesterase (ChE) biosensors have emerged as an ultra sensitive and rapid technique for toxicity analysis in environmental monitoring, food and quality control. These systems have the potential to complement or replace the classical analytical methods by simplifying or eliminating sample preparation protocols and making field testing easier and faster with significant decrease in costs per analysis. Over the years, engineering of more sensitive ChE enzymes, development of more reliable immobilization protocols and progress in the area of microelectronics could allow ChE biosensors to be competitive for field analysis and extend their applications to multianalyte screening, development of small, portable instrumentations for rapid toxicity testing, and detectors in chromatographic systems. In this paper, we will review the research efforts over the last 20 years in fabricating AChE biosensors and the recent trends and challenges encounter once the sensor is used outside research laboratory for in situ real sample applications. The review will discuss the generations of cholinesterase sensors with their advantages and limitations, the existing electrode configurations and fabrication techniques and their applications for toxicity monitoring. We will focus on low-cost electrochemical sensors and the approaches used for enzyme immobilization. Recent works for achieving high sensitivity and selectivity are also discussed.
在过去几十年中,胆碱酯酶(ChE)生物传感器已成为环境监测、食品和质量控制中毒性分析的一种超灵敏且快速的技术。这些系统有可能通过简化或消除样品制备方案,并使现场测试更简便、快速,同时大幅降低每次分析的成本,来补充或取代传统分析方法。多年来,更灵敏的ChE酶的工程设计、更可靠的固定化方案的开发以及微电子领域的进展,使得ChE生物传感器在现场分析中具有竞争力,并将其应用扩展到多分析物筛选、开发用于快速毒性测试的小型便携式仪器以及色谱系统中的检测器。在本文中,我们将回顾过去20年在制造乙酰胆碱酯酶(AChE)生物传感器方面的研究工作,以及一旦该传感器在研究实验室之外用于原位实际样品应用时所遇到的最新趋势和挑战。该综述将讨论胆碱酯酶传感器的几代产品及其优缺点、现有的电极配置和制造技术及其在毒性监测中的应用。我们将重点关注低成本电化学传感器以及用于酶固定化的方法。还将讨论近期实现高灵敏度和选择性的工作。