State Key Laboratory of Analytical Chemistry for Life Science, School of Chemistry and Chemical Engineering, Nanjing University, Nanjing 210093, China.
State Key Laboratory of Analytical Chemistry for Life Science, School of Chemistry and Chemical Engineering, Nanjing University, Nanjing 210093, China.
Talanta. 2018 Jan 1;176:124-129. doi: 10.1016/j.talanta.2017.08.017. Epub 2017 Aug 6.
Self-assembled monolayer (SAM) has been extensively applied as ideal interface layer for construction of biosensors. Its chain length and end functional groups determine the physical and chemical properties of the modified surfaces, which will affect the performance of constructed biosensors. Herein, we studied the influence of chain length of n-alkanethiols SAMs on the immunoreaction kinetics employing attenuated total reflection surface-enhanced infrared absorption spectroscopy (ATR-SEIRAS). Antibody (rabbit immunoglobulin) is assembled on carboxyl terminated SAMs of n-alkanethiols with different chain lengths (n = 3, 6, 11, 16). The whole fabrication steps of the immunoassay can be monitored in situ by the ATR-SEIRAS. From the time-dependent SEIRA spectra, the interfacial immunoreaction kinetics between the immobilized antibody and antigen (goat anti-rabbit immunoglobulin) can be evaluated. We found that the immunoreaction became faster with increasing the chain length of SAMs. This chain length dependent kinetics might be attributed to different orientations of the assembled antibody caused by different packing densities of SAMs. The present research offers a sensing platform to evaluate immunoassay kinetics and provides fundamentals for construction of immunoassay with high performance.
自组装单分子层(SAM)已被广泛用作构建生物传感器的理想界面层。其链长和末端官能团决定了修饰表面的物理和化学性质,这将影响构建的生物传感器的性能。在此,我们使用衰减全反射表面增强红外吸收光谱(ATR-SEIRAS)研究了 n-烷硫醇 SAMs 的链长对免疫反应动力学的影响。抗体(兔免疫球蛋白)被组装在具有不同链长(n = 3、6、11、16)的羧基末端 n-烷硫醇 SAM 上。通过 ATR-SEIRAS 可以原位监测整个免疫测定的制备步骤。从时间相关的 SEIRA 光谱中,可以评估固定化抗体和抗原(羊抗兔免疫球蛋白)之间的界面免疫反应动力学。我们发现,随着 SAM 链长的增加,免疫反应变得更快。这种依赖于链长的动力学可能归因于 SAM 不同的组装密度导致的组装抗体的不同取向。本研究提供了一个用于评估免疫分析动力学的传感平台,并为构建高性能免疫分析提供了基础。