Castillo Jaime, Blöchl Andrea, Dennison Stephen, Schuhmann Wolfgang, Csöregi Elisabeth
Biotechnology Department, Lund University, Lund, Sweden.
Biosens Bioelectron. 2005 Apr 15;20(10):2116-9. doi: 10.1016/j.bios.2004.09.013.
There is an increasing interest in new strategies for replacing animal tests in research. The use of cell cultures and integrated electrodes is seen as a promising alternative that could potentially solve this problem. In this work, we present a L-glutamate sensor based on a bienzyme redox hydrogel, capable of detecting the release of this excitatory neurotransmitter from adherently growing cells upon stimulation. The low working potential required for the operation of the sensor decreases the possibility of interference by easily oxidizable compounds always present in complex biological samples. A low detection limit of 0.5 microM L-glutamate, a response time of about 35 s, and a linear range of up to 60 microM are the main characteristics of the sensor. The system has been successfully employed to monitor the release of l-glutamate from HN10 and C6 cells upon stimulation with K(+)-ions. The developed integrated electrochemical platform will be used in future for drug screening and potentially for replacing animal models in neurological experiments.
在研究中,人们对替代动物试验的新策略越来越感兴趣。使用细胞培养和集成电极被视为一种有前途的替代方法,有可能解决这个问题。在这项工作中,我们展示了一种基于双酶氧化还原水凝胶的L-谷氨酸传感器,它能够检测在刺激下这种兴奋性神经递质从贴壁生长细胞中的释放。传感器运行所需的低工作电位降低了复杂生物样品中始终存在的易氧化化合物产生干扰的可能性。该传感器的主要特性包括0.5微摩尔/升L-谷氨酸的低检测限、约35秒的响应时间以及高达60微摩尔/升的线性范围。该系统已成功用于监测在用钾离子刺激时HN10和C6细胞中L-谷氨酸的释放。所开发的集成电化学平台未来将用于药物筛选,并有可能在神经学实验中替代动物模型。