Faculty of Mathematics, Physics and Informatics, Comenius University, Mlynská dolina F1, 842 48 Bratislava, Slovakia.
Department of Chemistry, University of Toronto, 80 St. George Street, Toronto, ON M5S, Canada.
Biosensors (Basel). 2020 Mar 3;10(3):20. doi: 10.3390/bios10030020.
This paper describes the anti-fouling capability of the novel monolayer-forming surface linker 3-(3-(trichlorosilylpropyloxy) propanoyl chloride (MEG-Cl). This compound was successfully attached to quartz crystal surfaces which are employed in an electromagnetic piezoelectric acoustic sensor (EMPAS) configuration. The MEG-Cl coated surface was both employed with Ni-NTA for the binding of recombinant proteins and for the tandem property of the avoidance of fouling from serum and milk. The MEG-Cl coated surfaces were found to provide a large degree of anti-fouling on the EMPAS device, and were comparable to previously studied MEG-OH surfaces. Importantly, the monolayer continued to provide anti-fouling capability to the biosensor following extension with Ni-NTA in place. Accordingly, this surface linker provides an attractive system for use in biosensor technology in terms of both its anti-fouling and linking properties.
本文描述了新型单层形成表面连接子 3-(3-(三氯硅基)丙氧基)丙酰氯 (MEG-Cl) 的抗污性能。该化合物成功地附着在石英晶体表面上,这些表面被用于电磁压电器件声传感器 (EMPAS) 配置中。MEG-Cl 涂覆的表面既可以用于 Ni-NTA 结合重组蛋白,也可以用于避免血清和牛奶污染的串联特性。研究发现,MEG-Cl 涂覆的表面在 EMPAS 装置上具有很大程度的抗污性能,与之前研究过的 MEG-OH 表面相当。重要的是,在 Ni-NTA 取代后,该单层继续为生物传感器提供抗污能力。因此,就其抗污和连接性能而言,这种表面连接子为生物传感器技术提供了一个有吸引力的系统。